Stonehenge Phase 1 – 8300 BCE Documentary

In this video, Robert John Langdon presents mathematical, hydrological, and archaeological evidence that Stonehenge Phase 1—built around 8300 BCE—was Britain’s first true monument. Far older than the conventional 3000 BCE timeline, this reinterpretation reveals a water-filled sanctuary and healing centre, not a dry ceremonial circle. Using LiDAR, ditch profiles, and groundwater modelling, the evidence shows Stonehenge began as a moated medical site in the Mesolithic.

🧮 Key discoveries include: The Aubrey Holes, once thought to be for timber posts, align with water access and wooden palisades. The ditch and moat were dug to the water table, filling naturally and creating bathing pools. Bluestones dissolved minerals into the moat, acting like prehistoric “bath salts” for antiseptic healing. Mortuary slabs within a palisaded enclosure show the site doubled as a treatment centre and mortuary. Radiocarbon reliance on antler picks misdates the site to its abandonment, not its creation.

🔑 Main Arguments: • Stonehenge Phase 1 was a hydrological monument, designed around water, not astronomy. • It functioned as a medical sanctuary, where bluestone-infused waters were used for healing. • The earliest construction aligns with Britain’s high post-glacial water table, not later Neolithic dryland farming.

📏 Methodology Highlights: LiDAR analysis of river valleys and ditch alignments Hydrological modelling of groundwater recession since the Ice Age Archaeological reinterpretation of excavation reports (Aubrey Holes, Station Stones, ditch profiles) Mathematical alignment with Stonehenge’s measured geometry and ditch depth

🚨 This changes everything: Stonehenge did not begin as a late Neolithic temple. It was originally Britain’s first healing monument, built by a Mesolithic boat-using civilisation.

📚 Based on empirical LiDAR, ditch stratigraphy, and hydrological data cross-referenced with archaeological excavation reports.

🔗 LINKS & RESOURCES Blog post: “Stonehenge Phase 1 – Britain’s First Monument” 👉 https://prehistoric-britain.co.uk/sto… Book: The Stonehenge Enigma 👉 https://prehistoric-britain.co.uk/the… 📍 Related Blogs The Stonehenge Code – Mathematical Proof of Early Dating 👉 https://prehistoric-britain.co.uk/the… Post-Glacial Flooding Hypothesis – Rethinking the Past 👉 https://prehistoric-britain.co.uk/ret… Stonehenge, Doggerland & the Atlantis Connection 👉 https://prehistoric-britain.co.uk/sto… Antler Pick Hoax – Misdating Britain’s Monuments 👉 https://prehistoric-britain.co.uk/twi…

Contents/Chapters – with Timestamps

00:00 Stonehenge Phase One — Britain’s First Monument
00:05 Introduction — The Forgotten Phase
01:12 How We Know Stonehenge Phase One Dates to 8300 BCE
03:08 Layout and Function — The Real Purpose of the Site
05:26 The Bluestones — Transport, Composition and Use
07:10 The Water — How It Worked and Why It Mattered
08:25 Evidence of Bluestone Reuse and Replacement
09:43 The Healing Spring at Carn Menyn
13:10 The Palisade and the Silent Towers
14:30 Decline and Transition to Phase Two
15:39 Conclusion — A Monument Built on Function, Not Fantasy

Key Findings

Here are 8 key findings drawn directly from the transcript:

  • Stonehenge Phase One is argued to date to around 8300 BCE, based on radiocarbon dates from Stonehenge postholes and comparable dates from Preseli quarry activity.
  • The earliest Stonehenge is presented as a practical health and mortuary site, not primarily as a temple or ceremonial monument. Its layout is interpreted as combining water, excarnation and controlled access.
  • The ditch is interpreted as a water-filled moat or therapeutic bathing system, supplied by the local chalk aquifer rather than as a purely symbolic earthwork.
  • Bluestones are argued to have been deliberately chipped and placed into the water, allowing salts and trace minerals to leach into the moat and create a mineral-rich treatment environment.
  • The large number of bluestone fragments is interpreted as evidence of repeated use and replacement, rather than simple accidental breakage or collapse.
  • The Preseli spring at Carn Menyn is proposed as a physical model for Stonehenge’s mineral-water system, suggesting that the same stone was transported to reproduce the properties of the Welsh spring.
  • The Y and Z holes are interpreted as evidence for a timber palisade enclosing excarnation platforms, creating a controlled area where scavenger birds could remove flesh before bones were transferred elsewhere.
  • The transition to Phase Two is linked to falling water levels, with the decline of the aquifer-fed system prompting a shift away from the original practical function toward the later monumental Stonehenge.

Transcript

Introduction — The Forgotten Phase

Most people imagine Stonehenge as the great sarsen trilithons. In fact, those belong to Phase Two, constructed around 4300 BCE. The real story begins much earlier.

Phase One, built around 8300 BCE, was entirely different in form and function.

This earliest version of Stonehenge was a working health and mortuary site. It featured a chalk-cut moat that held water, 58 imported Preseli bluestones, and a timber palisade enclosing raised stone platforms for excarnation.

Birds were allowed to clean the dead, a practice still seen today in India’s Towers of Silence. The Y and Z holes marked the outer limits of the palisade. The Q and R holes defined where excarnation slabs once stood.

The entire setup was pragmatic, not ritualistic.

How We Know Stonehenge Phase One Was Built Around 8300 BCE

The date for Stonehenge Phase One is not speculative. It is supported by radiocarbon dating from multiple sites.

Charcoal samples from postholes discovered during the Stonehenge car park excavation have been dated to around 8300 BCE.

This corresponds closely with two quarry sites in the Preseli Hills of Wales, where evidence of human activity, including hearths associated with stone extraction, has also produced C14 dates from the same period.

These sites are not random campfires but appear to be linked directly to quarrying activity associated with the bluestones.

This level of coordination between quarrying and monument construction suggests an advanced society operating across hundreds of miles, capable of planning and logistics long before the Neolithic.

The matched radiocarbon dates from the quarry and monument provide strong empirical support for the theory that bluestones were transported and erected at Stonehenge in the ninth millennium BCE.

Hydrological modelling further reinforces the idea that this was the period when the chalk aquifer could have provided a permanent water source at the monument. But it is the radiocarbon evidence, independently dated at both source and site, that fixes Stonehenge Phase One to approximately 8300 BCE.

This would make it the earliest scientifically verified monumental construction in the British Isles.

Layout and Function — The Real Purpose of the Site

The layout of Phase One was deliberate and practical.

At the centre were the Q and R holes, which supported dolmen-style excarnation slabs: single flat stones balanced precisely on pointed supports to deter rodents.

These slabs were used to expose bodies to the elements and scavenger birds — an efficient and sanitary method of processing the dead.

The palisade surrounding the structure, marked by the Y and Z holes, enclosed this inner space to protect the area while allowing avian access.

The design shows a clear understanding of decomposition cycles and scavenger behaviour.

The north-west orientation of the Q and R hole alignment corresponds to the Moon’s setting position, reinforcing the functional connection between death and timing.

The number of bluestones — 58 — was not arbitrary. It corresponds with a lunar cycle used to track the Moon’s 18.6-year nodal variation and eclipse cycle.

This knowledge was likely vital for excarnation timing, navigation and tidal awareness — critical information for a riverine trading society.

The Bluestones

The bluestones themselves were never intended simply to remain intact.

As noted by Darvill and Wainwright, the bluestones were chipped from almost immediately. More than 3,675 fragments have been discovered — a remarkable total given that only around half of the site has been excavated.

These fragments were deliberately introduced into the chalk moat.

With their mineral and rock-salt content, the bluestone chips enriched the water, enhancing its potential medicinal properties.

This suggests that Stonehenge Phase One was not a ceremonial temple, but a sophisticated facility for managing death, disease and recovery.

Transport, Composition and Use

The Preseli bluestones used at Stonehenge were transported from south-west Wales, likely using river and canal networks rather than being dragged overland.

The discovery of an ancient prehistoric catamaran boatyard in Wales suggests that heavy loads could have been transported using double-hulled craft.

Britain’s river levels were significantly higher at the time, which could have enabled direct water transport towards the site without requiring the type of overland journey normally imagined.

But what matters more than their origin is their composition.

The Preseli stones contain salts, copper and trace minerals that can leach into water when submerged or broken.

More than 3,675 bluestone fragments have been found in the moat area.

This suggests that the stones may have been intentionally broken up to release minerals into the water, creating a form of early mineral spa.

This interpretation is further supported by Darvill and Wainwright, who observed that the stones were being chipped from the time of their erection and proposed that Stonehenge may have served as a healing centre.

This evidence strengthens the argument that Stonehenge functioned primarily as a public-health structure, particularly concerned with sepsis and infection — major causes of death in prehistoric society.

The Water — How It Worked and Why It Mattered

The chalk-cut ditch surrounding the central enclosure was not ornamental.

It was a functional water feature drawing from a naturally high water table during the Mesolithic.

The aquifer-fed ditch would have maintained mineral-rich water around the site, turning the enclosed area into a therapeutic environment.

Bluestone chippings, deliberately broken and deposited in this moat, would have slowly released salts and trace elements into the water.

Salt has antiseptic properties and is still used in wound care today. Soaking injuries in such water could therefore have helped clean wounds and possibly reduce infections in a world without antibiotics.

The antlers found in the ditch have traditionally been interpreted as construction tools.

An alternative explanation is that they were dredging tools used to maintain the flow and clarity of the water system.

They were found in later layers, suggesting periodic cleaning and maintenance of the moat rather than necessarily being tools used in its original excavation.

Evidence of Reuse and Replacement

Conventional narratives tend to portray the stones as being erected once and then remaining in place.

However, C14 dating and excavation records suggest a more complicated history.

The bluestones appear to have been replaced multiple times over a prolonged period, rather than simply being transported once and left standing.

Dating of stone-socket fills indicates repeated insertion events, in some cases separated by centuries.

This supports the idea that the site was actively maintained rather than simply abandoned or commemorated.

Within this model, replacement intervals may have been connected to mineral depletion. Once sufficient salts and trace minerals had leached from existing stones, they could have been broken up and replaced.

This could explain the extraordinarily large number of fragments despite the limited amount of the monument that has been excavated.

With only around 50 per cent of the site dug, more than 3,600 fragments have already been recovered, meaning the total surviving quantity could potentially be considerably greater.

Under this interpretation, these were not simply random breakages or damage caused by collapse. The stones were systematically chipped and the material deposited into the water.

The Healing Spring at Carn Menyn

A major criticism of the healing-stones hypothesis has been the supposed lack of empirical evidence.

But research at Carn Menyn in the Preseli Mountains — one of the proposed source areas for Stonehenge bluestones — reveals a now-dry sacred springhead that may help explain the stones’ original significance.

Gordon Freeman’s fieldwork identified a collapsed cromlech and associated cairn built directly over a once-flowing freshwater spring known locally as Pen y Tarddiant Sanctaidd — the Holy Springhead.

This spring fed a stone-lined stream channel called Rhestr Gerrig, or “Stone Row”, which wound through the landscape towards a marshy area known as Fat Hazelnut Bog.

Although this water source has since dried up, its historical importance appears considerable.

The spring was significant enough to have a formal monument constructed over it, and the fact that a cromlech capped the spring suggests a long tradition of ritualised — and potentially therapeutic — use.

But this may be more than symbolism.

The springhead sits within the geological formation associated with spotted dolerite bluestone.

If the spring water passed through mineral-bearing rock, it could have absorbed salts and trace mineral ions.

The potential effects of mineral water on wounds could have been observed by prehistoric people without any knowledge of modern biochemistry.

This provides a practical reason why the same stone could have been deliberately selected and transported more than 200 kilometres to the chalk aquifer basin at Stonehenge: to reproduce the properties associated with the Preseli water source.

Under this interpretation, the deliberate chipping of bluestones and depositing of their fragments into the moat was not ceremonial destruction.

It was chemical replication.

The stones infused the water with trace minerals, producing a mineralised bathing system intended to reproduce the healing waters associated with the original spring in Wales.

Taken together, the presence of a prehistoric sacred spring, the mineral composition of bluestone and the evidence for deliberately broken bluestone at Stonehenge allow archaeology, geology and hydrology to be considered together as a functional explanation for what has traditionally been labelled a ritual monument.

Stonehenge Phase One was therefore not simply a temple.

It may have been Britain’s first public-health sanctuary, with the spring at Carn Menyn providing its biochemical blueprint.

The Palisade and the Silent Towers

One of the most overlooked features of Stonehenge Phase One is the timber palisade surrounding the inner platforms.

This structure was not necessarily defensive. It could have served a functional and hygienic purpose, containing excarnation within the central area while restricting access.

This enclosure is defined by the Y and Z holes, which are consistent and evenly spaced.

Within this interpretation, they formed the foundation for uprights surrounding a series of protected raised platforms.

Birds — particularly carrion feeders such as jackdaws, ravens and crows — were allowed access to clean the bodies.

The cleaned bones were then taken to nearby Long Barrows for interment.

This practice resembles the principle employed by India’s Towers of Silence, where sky-burial traditions involve exposure of the dead to carrion birds.

It reflects a process of natural decomposition and purification.

Stonehenge’s arrangement therefore provided a sanitary and repeatable method of processing the dead, remarkable for its time.

Decline and Transition to Phase Two

Over time, the water table dropped as the aquifer drained and post-glacial rebound altered the landscape.

The once-functioning moat began drying up and the mineral bath became less effective.

This environmental change marks the end of Phase One and the beginning of a new chapter in the life of Stonehenge.

The bluestones were gradually replaced by larger sarsen stones, marking a transition from a practical medical site to something more monumental.

These sarsens were installed around 4300 BCE, beginning what most people today incorrectly consider to be the start of Stonehenge.

This change is reflected in the construction of the Avenue, a wide route leading away from the original riverfront location towards a new shoreline farther to the north-east.

This redirection reflects both astronomical alignments and the practical reality of hydrological change.

Conclusion — A Monument Built on Function, Not Fantasy

The first phase of Stonehenge was not a mystical temple, a ceremonial gathering place or simply a stone calendar.

It was a public-health structure grounded in the harsh realities of Mesolithic life: infection, injury and death.

Its foundation was not spiritual conjecture but practical science, built on a prehistoric shoreline, maintained by a saturated aquifer and enriched by mineral-laden bluestone chips introduced into the water.

It was a place of triage, treatment and transformation.

Thanks to a new mathematical dating model — grounded in radiocarbon evidence from quarry hearths, site postholes and hydrological mapping — Phase One can be placed at around 8300 BCE.

This would place Stonehenge among the oldest monumental structures in Europe and dismantle the conventional late-Neolithic timeline proposed for its beginnings.

It was not a late-Neolithic curiosity, but a pioneering Mesolithic achievement.

And this was a rational, functional innovation, unlike the speculative calendars and solar temples traditionally proposed.

Archaeologists have consistently struggled to interpret key features of the site.

The postholes forming the central crescent pattern align with where excarnation slabs could have stood. Their unusual shape and placement remain largely unacknowledged in conventional interpretations.

Even the surrounding palisade, indicated in this model by the Y and Z holes, has received little consideration as a protective and hygienic structure.

Traditionally described simply as a ceremonial ditch, the ditch may instead have been a ring of water-filled pits designed to accommodate seating platforms below water level for therapeutic bathing.

This unusual design is central to understanding what Stonehenge might originally have been.

The fog is lifting with advances in LiDAR, mineral analysis, hydrology and radiocarbon calibration.

Stonehenge Phase One should now be considered as a potential candidate for Britain’s first scientific structure — a masterpiece of Mesolithic engineering, biology and community medicine, misunderstood for thousands of years by a profession still reluctant to let go of fantasy.

Author’s Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blogs also investigate prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Other Blogs

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The Stonehenge Enigma: Part 1/6

The Archaeological Evidence – Book Extract

The Post-Glacial Flooding Hypothesis

Chapter 4

What the Early Excavations Found

Long before modern geological surveys were conducted, archaeologists had already begun investigating the interior of the Stonehenge enclosure. Between 1919 and 1926 Lieutenant-Colonel William Hawley carried out the first systematic excavations of the monument. His work was followed by later investigations, most notably those directed by Richard Atkinson during the mid-twentieth century. (The Stonehenge Enigma; The Archaeological Evidence)

These excavations were primarily concerned with understanding the monument’s construction sequence. Trenches were opened across the ditch, around the stone settings, and within many of the features that form the complex layout of Stonehenge. The discoveries made during these investigations established much of the archaeological framework that is still used to interpret the monument today.

However, the excavation reports also contain numerous observations on the soil, sediments, and fills encountered during excavation. At the time, these descriptions were simply recorded as part of the archaeological record. In hindsight, some of these observations provide important clues about the environmental conditions that existed at the site.

One of the most striking features uncovered during the early excavations was the nature of the ditch surrounding the monument. Rather than being cut into solid chalk alone, the ditch contained a mixture of chalk rubble, silts, and other sediments that had accumulated within it after its construction.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

Figure 5 – Hawley’s Ditch Excavations and the ‘Dark Layer’

In places, the lower fills of the ditch were described as soft chalk slurry and silty deposits, suggesting that water had been present within the feature at various times. Such conditions can occur when rainwater or groundwater collects within excavated hollows, gradually depositing fine sediments as the water settles.

Similar observations were made in other features within the monument. Some excavated pits and holes contained deposits of fine silt and mixed sediments, rather than the simple collapse of chalk rubble that might be expected in a completely dry environment.

These details attracted relatively little attention at the time because the primary goal of the excavations was to establish the chronology of the monument rather than reconstruct its environmental setting. Nevertheless, the descriptions recorded in the excavation reports remain valuable pieces of evidence.

When viewed alongside the geological evidence discussed in the previous chapter, these archaeological observations begin to take on a new significance. Features that were once interpreted simply as construction cuts or refuse deposits may also reflect the interaction between the monument and the surrounding hydrological environment.

(The Stonehenge Enigma; The Archaeological Evidence)

In other words, the excavations did not merely reveal the architecture of Stonehenge; they also recorded traces of the landscape conditions in which the monument once stood.

The importance of this relationship between archaeology and environment becomes clearer when the wider Stonehenge landscape is considered. The monument was not an isolated structure but part of a much larger complex of earthworks, avenues, and associated sites that extend across the surrounding countryside.

Understanding how these features relate to one another requires us to look beyond the excavation trenches and examine the broader landscape in which Stonehenge was built.

(The Stonehenge Enigma; The Archaeological Evidence)

For full information see our blog: https://prehistoric-britain.co.uk/the-great-stonehenge-hoax

Chapter 5

The Earthwork Enclosure

The Excavation Record

The earliest structural feature at Stonehenge is the circular earthwork enclosure that surrounds the monument. This enclosure consists of a ditch approximately 100 metres in diameter, with an internal bank formed from the chalk removed during its excavation.

The first systematic investigation of this feature was carried out by Lieutenant-Colonel William Hawley between 1919 and 1926. Hawley opened several trenches across the ditch and bank in order to understand how the monument had been constructed. His excavations confirmed that the ditch had been cut directly into the natural chalk bedrock that underlies Salisbury Plain.

Hawley recorded the ditch as being roughly 6–7 metres wide and up to 2 metres deep, with a steep inner face and a more gradual outer slope. The chalk removed from the ditch had been thrown inward to form the surrounding bank, creating the circular boundary that still defines the monument today.

Later excavations and reassessments of Hawley’s work confirmed that this enclosure represents the earliest construction phase of the monument. The circular earthwork established the basic layout of the site, around which later features—including the stone settings—were arranged.

While the purpose of the ditch and bank has often been interpreted simply as a boundary marker, the excavation reports contain several observations about the ditch fills that deserve closer examination.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)
Figure 6 – Phase 1 started with a ditch and bank

Physical Characteristics of the Ditch

Hawley observed that the lowest fills of the ditch consisted largely of collapsed chalk rubble that had fallen from the sides of the excavation over time. Above this material were layers of fine silts and mixed sediments that had gradually accumulated within the hollow.

In certain sections of the ditch, Hawley also recorded the presence of a dark organic layer lying above the lower chalk deposits. Such layers can develop when water remains within a feature long enough for organic material and fine sediments to settle and accumulate.

Another observation made during the excavations was the presence of clay deposits within parts of the ditch base. Clay is not a common material in the surrounding chalk downland, and its occurrence in the ditch suggests it may have been deliberately introduced.

Perhaps the most unusual feature described in the excavation reports was the occurrence of densely packed flints within sections of the ditch floor. These flints appeared to have been compacted into the underlying sediments, suggesting that they had been trodden or pressed into place rather than simply deposited as loose rubble.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

Taken individually, these observations might appear unremarkable. However, when considered together, they suggest that the ditch experienced conditions quite different from those expected in a permanently dry chalk environment.

Environmental Implications

When the ditch observations are viewed in light of the geological setting described in the previous chapters, a more complex picture begins to emerge.

The Stonehenge enclosure lies within a shallow basin in the chalk plateau of Salisbury Plain. In chalk landscapes, groundwater levels can fluctuate significantly depending on climatic conditions. When groundwater rises, or prolonged rainfall occurs, water may collect in depressions and excavated features before draining away towards nearby river valleys.

Under such circumstances, a ditch cut into chalk bedrock could temporarily hold water. Standing or slow-moving water would allow fine silts and organic material to settle, producing the types of deposits described in the excavation reports.

The combination of clay deposits and compacted flints recorded in parts of the ditch is also noteworthy. A similar construction method has long been used to form traditional dew ponds on chalk downlands. In such ponds, a layer of clay is used to seal the basin, while chalk rubble or flints are pressed into the surface to stabilise the lining and prevent erosion.

The resemblance between these construction techniques and the features recorded in the Stonehenge ditch does not necessarily mean that the enclosure was intended to function as a dew pond. However, the similarities suggest that the builders may have been aware of how clay and compacted stone could be used to control or retain water within excavated features.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

Whether the ditch occasionally held water as a result of natural hydrological conditions, or whether aspects of its construction were intended to influence how water behaved within the enclosure, remains an open question. What is clear from the excavation record is that the ditch did not remain a simple dry hollow throughout its history.

These observations provide an important reminder that the archaeological features at Stonehenge cannot be fully understood without considering the environmental conditions of the surrounding landscape

Closer examination of the excavation reports also reveals an important structural detail about the enclosure ditch that is often overlooked. Although the monument is usually described simply as a continuous circular ditch, Hawley’s excavation trenches showed that the feature was not cut as a uniform trench in the manner of a conventional defensive earthwork.

Instead, sections of the ditch appear to have been excavated as a series of adjoining pits or scoops, separated by short chalk walls or uncut partitions. In some places, the sides of these pits formed distinct vertical faces, while the bases contained flattened areas resembling seating ledges or working platforms within the chalk.

This segmented construction is unusual when compared with later defensive or boundary ditches, which are normally dug as continuous trenches designed to maximise obstruction or drainage. The Stonehenge enclosure, by contrast, appears to have been created through a sequence of individual excavation pits that collectively form the circular earthwork seen today.

Such a design raises important questions about how the feature functioned. A series of adjacent pits would behave very differently from a continuous drainage ditch. Individual hollows within the ring could potentially retain water independently, particularly if parts of the base were lined or compacted as suggested by the clay deposits and trodden flints described earlier.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)
Figure 7- The UNIQUE ditch showing Pits , Walls and Seats

In this sense, the enclosure may have functioned less like a defensive ditch and more like a chain of shallow basins arranged around the perimeter of the monument. Whether these basins were intentionally designed to interact with water, or whether this behaviour emerged from the way the ditch was excavated into the chalk, remains an important question when considering the environmental setting of Stonehenge.

These observations provide an important reminder that the archaeological features at Stonehenge cannot be fully understood without considering the environmental conditions of the surrounding landscape.

This brings us to one of the most intriguing elements of the monument’s earliest phase: a ring of pits discovered just inside the enclosure ditch. Known today as the Aubrey Holes, these features are among the most distinctive and debated components of the Stonehenge layout.

For full information see our blog: https://prehistoric-britain.co.uk/stonehenge-phase-1-britains-first-monument

Chapter 6

The Aubrey Holes – The Operating Ring of the Stonehenge Computer

The Aubrey Circle

Just inside the enclosure ditch lies a ring of 56 evenly spaced pits, known as the Aubrey Holes. These features are among the earliest structural elements of the monument and define a circle approximately 87 metres in diameter.

The pits were first recognised in the seventeenth century by the antiquarian John Aubrey, but their archaeological significance was confirmed during the excavations of William Hawley in the 1920s. Hawley demonstrated that the features were deliberately excavated pits cut into the chalk bedrock, each roughly 1 metre in diameter and about 1 metre deep.

The precision of their layout is striking. Fifty-six pits are spaced almost perfectly around the interior of the enclosure, producing a regular circular array that would have required careful measurement during construction. The labour required to excavate such a ring into solid chalk also indicates that the feature served a deliberate and specific purpose.

Despite more than a century of study, conventional archaeological interpretations have never provided a convincing explanation for why exactly 56 pits were constructed in this precise circular arrangement.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

Figure 8 – Bluestone in an Aubrey Hole and the Ditch Relationship

The Mathematical Structure of the Circle

The number 56 is unlikely to be accidental.

A circle divided into fifty-six positions creates a simple numerical system capable of tracking repeating natural cycles. When used sequentially, the ring allows a marker to move around the circle one position at a time, returning to the starting point after completing the cycle.

The significance of this number becomes clear when compared with the behaviour of tidal and lunar cycles. The circle of 56 positions can represent two consecutive 28-day tidal cycles, allowing the system to track the repeating pattern of tidal strength associated with the Moon.

By advancing a marker one position each day, the circle becomes a continuous counting mechanism. After two 28-day cycles, the marker returns to its starting point and the sequence begins again.

Such a system requires only a simple rule: one movement per day.

The One-Marker Operating System

The Aubrey circle can therefore be operated using a single movable marker.

In this arrangement:

• each Aubrey hole represents one day
• the marker advances one position per day
• the full circle records two tidal cycles
• the sequence then repeats indefinitely

This creates a simple analogue system for tracking the strength of tidal cycles through time.

For societies dependent on water transport, such information would have been highly valuable. Predicting when strong or weak tides would occur allows travellers to plan journeys through shallow waterways, estuaries, and flooded river systems where water levels and currents change dramatically during the lunar cycle.

The Aubrey ring therefore functions not merely as a geometric feature but as a circular counting mechanism capable of encoding natural environmental cycles.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

Stonehenge as an Environmental Computer

When the Aubrey ring is considered within the wider landscape context described earlier in this book, its significance becomes clearer.

If prehistoric Britain possessed higher groundwater levels, expanded river systems, and extensive wetlands—as suggested by geological and borehole evidence—then movement through the landscape would often have depended on water. Travel along rivers, flooded valleys, and coastal inlets would have required knowledge of changing water levels and tidal behaviour.

In such an environment, the ability to predict tidal strength and water movement would have been a practical necessity. The Aubrey circle offers a simple yet effective mechanism for tracking these cycles over time.

Seen in this light, the monument can be interpreted not simply as ceremonial architecture but as an environmental computing device—a fixed geometric structure used to measure and predict the rhythms of the natural world.

A more detailed analysis of this operating system, including the role of the bluestones and the North and South Barrows that are within the ditch ring which helps indicating tidal strength and the full mechanics of the Stonehenge tidal model, is presented in the companion study Stonehenge: The World’s First Computer, where the system is examined in depth.

FREE online Book

From Earthwork to Instrument

The earliest phase of Stonehenge therefore combines two key elements:

• the segmented enclosure ditch
• the 56-hole Aubrey ring

Both were excavated directly into the chalk bedrock and form part of the monument’s ground architecture.

Together they suggest that the earliest builders of Stonehenge were not simply creating a symbolic enclosure but constructing a carefully designed geometric system embedded within the landscape.

In this interpretation, the monument began as a functional instrument, capable of tracking environmental cycles that influenced movement and activity within the surrounding landscape.

Understanding how this early system developed further requires examining the next phase in the monument’s construction: the erection and arrangement of the stone settings that transformed Stonehenge into one of the most recognisable structures of prehistoric Britain.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

For full information see our blog: https://prehistoric-britain.co.uk/stonehenge-the-worlds-first-computer

Chapter 7

The Bluestones – Craig Rhos-y-Felin and the Welsh Quarries

Identifying the Source of the Bluestones

The smaller stones within the Stonehenge monument are known as bluestones, typically weighing between two and four tonnes. Unlike the larger sarsen stones that dominate the later monument, the bluestones are composed of several distinct volcanic and igneous rock types not found on Salisbury Plain.

Recent advances in geochemical fingerprinting have allowed archaeologists to match these stones to specific outcrops in the Preseli Hills of western Wales. Among the most significant of these locations is the quarry site at Craig Rhos-y-Felin, along with additional sources such as Carn Goedog and other nearby Preseli outcrops.

These discoveries have confirmed that the bluestones used at Stonehenge originated more than 200 kilometres away from the monument.

Identifying the quarry sources, however, raises a far more important question: when were these stones quarried and transported?

Evidence of Quarrying

Excavations at Craig Rhos-y-Felin and Carn Goedog have revealed clear signs of prehistoric activity associated with the extraction of bluestones.

At Craig Rhos-y-Felin archaeologists discovered human-made hearths, stone tools, and a partially quarried monolith still embedded in the rock face. These findings demonstrate that the outcrop was not simply a natural deposit but a location where stone was deliberately worked.

Radiocarbon dating of charcoal from these hearths has produced a series of dates indicating repeated human activity at the quarry sites.

Crucially, many of these dates fall within the Mesolithic period, long before the Neolithic period traditionally associated with the construction of Stonehenge.

The presence of these hearths, together with the quarry features themselves, indicates that people were working these outcrops and interacting with the bluestone deposits thousands of years earlier than previously assumed.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

The Landscape of the Quarry Sites

The geographical setting of the quarry sites provides further clues about how the stones may have been transported.

Craig Rhos-y-Felin lies beside what was once a substantial river system feeding into the River Nevern. Radiocarbon dating of the palaeochannel deposits indicates that this watercourse flowed past the quarry outcrop for thousands of years, extending to within a few metres of the rock face.

Evidence from the site suggests that during the Mesolithic period the river was significantly larger than the stream visible today.

This positioning is significant. It places the quarry directly on the edge of a navigable waterway capable of transporting heavy materials.

Similar patterns appear elsewhere in the Preseli region. Other bluestone sources, including Carn Goedog and nearby outcrops, are also connected by streams and rivers leading toward larger river systems.

The quarry sites therefore sit within a network of waterways that would have provided natural transport routes across the landscape.

Transport by River

Moving multi-tonne stones across rugged terrain presents enormous logistical challenges if attempted overland. By contrast, transporting heavy loads by water is far more efficient, as buoyancy allows boats or rafts to carry stones with relatively little effort.

The location of the bluestone quarries along river systems suggests that water transport may have been the primary means of moving these stones.

Rather than dragging stones across mountains, forests, and valleys, it would have been far easier to load them onto boats and transport them along the river systems connecting the Preseli region to the wider landscape.

This possibility becomes even more plausible when the environmental conditions of the early Holocene are considered. Higher water levels and expanded river systems would have made river navigation far more practical than it appears today.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

Early Activity at Stonehenge

Evidence from Stonehenge itself also points toward human activity during the Mesolithic period.

Excavations near the monument, including discoveries around the former visitor car park, revealed a series of postholes associated with the site’s early occupation. Charcoal recovered from these features produced radiocarbon dates ranging from approximately 8860 to 6590 BCE.

Additional discoveries include a piece of rhyolite associated with one of these features and charcoal recovered from stone sockets near the monument.

These findings indicate that the Stonehenge landscape was already a place of human activity thousands of years before the traditionally accepted Neolithic construction date of the monument.

(The Stonehenge Enigma; The Archaeological Evidence)

6. Connecting the Quarry Sites and Stonehenge

When the radiocarbon evidence from the Welsh quarry sites is compared with the Mesolithic dates obtained from Stonehenge, an intriguing pattern emerges.

Both locations show evidence of human activity during overlapping periods of the Mesolithic era.

This overlap raises an important question: could the activity recorded at the quarry sites and the early activity recorded at Stonehenge be connected?

(The Stonehenge Enigma; The Archaeological Evidence)

To answer this question, it is necessary to examine the radiocarbon datasets from both locations in detail and determine whether the similarities between them could have occurred by chance.

The Code

A detailed analysis of the radiocarbon datasets from Stonehenge and the Welsh quarry sites reveals a remarkable statistical relationship between the two.

When the calibrated radiocarbon ranges from the Stonehenge post holes are compared with those from Craig Rhos-y-Felin and Carn Goedog, the probability that the observed overlaps occurred purely by chance becomes extraordinarily small.

Using a probability model that compares the overlapping ranges of these independent radiocarbon samples, the likelihood that the pattern occurred by chance is approximately 1 in 1.27 × 10²⁹.

In practical terms, this probability is so small that it strongly suggests a genuine chronological relationship between the activity recorded at the Welsh quarry sites and the early activity at Stonehenge.

This statistical pattern forms what may be described as The Stonehenge Code.

The mathematical analysis behind this conclusion, and the implications it has for the dating of Stonehenge’s earliest phase, will be examined in detail in the following chapter.

For more detailed information see our blog: https://prehistoric-britain.co.uk/bluestone-enigma

Chapter 8

The Stonehenge Code

The Chronology Problem

The accepted chronology of Stonehenge places its construction within the Neolithic period, beginning around 3000 BCE and continuing through several later phases of modification. This interpretation has remained largely unchanged for decades and forms the basis of most archaeological explanations of the monument.

However, a growing body of radiocarbon evidence challenges this timeline.

Excavations at both Stonehenge and the Welsh bluestone quarry sites have produced a series of dates that extend deep into the Mesolithic period. These dates have often been treated as isolated anomalies because they do not fit comfortably within the accepted Neolithic framework.

Yet when these dates are examined together rather than individually, a striking pattern begins to emerge.

Recent carbon dating at the bluestone quarry sites provides compelling, irrefutable mathematical evidence that Stonehenge’s construction dates to the Mesolithic era. This new data suggests Stonehenge is approximately 5000 years older than experts had previously believed, challenging established views on its origins and adding new depth to our understanding of this ancient monument

Mesolithic Evidence at Stonehenge

Evidence for Mesolithic activity at Stonehenge has been known for decades.

During excavations in 1966, Lance and Faith Vatcher discovered several post holes near Stonehenge, close to the location of the old visitor car park. These holes were initially interpreted as having a Neolithic character, although no datable pottery was found.

Later analysis revealed that charcoal from these features consisted largely of pine. This created a problem for the established chronology, as pollen evidence suggested pine had disappeared from the area before the supposed Neolithic construction of Stonehenge.

Radiocarbon dating eventually placed these pine charcoal samples firmly within the Mesolithic period, producing dates between approximately 8860 BCE and 6590 BCE.

(The Stonehenge Enigma; The Archaeological Evidence)

Figure 9- Old Car Park Post Holes

Rather than prompting a reassessment of Stonehenge’s chronology, these early dates were generally dismissed as evidence of unrelated Mesolithic activity, sometimes interpreted as the remains of totem poles erected by hunter-gatherer groups passing through the landscape.

Further discoveries complicated the situation.

In 1988–89, Wessex Archaeology uncovered another Mesolithic posthole, along with a piece of rhyolite dated between 7737 and 7454 BCE. Additional charcoal discovered in the socket of Stone 10 during excavations by Darvill and Wainwright produced dates between 7330 and 7060 BCE.

These findings indicate that human activity at Stonehenge began thousands of years earlier than the accepted Neolithic construction date.

(The Stonehenge Enigma; The Archaeological Evidence)
Figure 10 – Another Old Car Park Post Hole found in 1988

Mesolithic Activity at the Bluestone Quarries

At the same time that early dates were appearing at Stonehenge, excavations in the Preseli Hills of Wales began identifying the sources of the monument’s bluestones.

Quarry sites at Craig Rhos-y-Felin and Carn Goedog revealed evidence of prehistoric quarrying activity, including artificial platforms, quarry debris and human-made hearths.

Radiocarbon dating of these hearths produced a series of Mesolithic dates spanning several millennia.

At Craig Rhos-y-Felin alone, hearths produced dates in three main clusters:

8550 – 8330 BCE
8220 – 7790 BCE
7490 – 7190 BCE

These dates indicate that human activity at the quarry spanned a long period, possibly more than a thousand years.

The layout of the quarry site is also significant. Geological evidence shows that during the Mesolithic period, a large stream that fed the River Nevern flowed directly past the rock outcrop. Charcoal from the basal fill of this palaeochannel dates between 5800–5640 BCE and 5620–5460 BCE, confirming that substantial watercourses existed beside the quarry during the period of human activity.

This geographical arrangement strongly suggests that quarried stones could have been transported directly by boat.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

Figure 11- one of four hearths found on site – all Mesolithic in date

The Problem with Conventional Interpretation

Despite the large number of Mesolithic dates from the quarry sites, archaeological interpretation has tended to focus on a much smaller number of Neolithic samples that better match the traditional Stonehenge chronology.

For example, reports describing Craig Rhos-y-Felin highlighted two radiocarbon dates that appeared consistent with the accepted Neolithic construction phase of Stonehenge. These dates were used to support the theory that the monument may have been constructed in Wales and later dismantled and moved to Salisbury Plain several centuries later.

However, this interpretation largely overlooks the much larger dataset of Mesolithic dates from the same excavation.

The presence of multiple Mesolithic hearths at the quarry raises an obvious question. If the quarry was occupied repeatedly by Mesolithic communities for over a thousand years, what were these people doing at the site if not extracting stone?

The assumption that Mesolithic people could not have quarried or transported large stones reflects modern expectations rather than direct archaeological evidence.

Comparing the Radiocarbon Evidence

When the radiocarbon dates from Stonehenge are compared with those from the Welsh quarry sites, the two datasets begin to overlap in a striking way.

Five radiocarbon samples from Stonehenge post holes fall within the following calibrated ranges:

• HAR-455: 8825 – 7742 BCE
• HAR-456: 7377 – 6651 BCE
• GU-5109: 8259 – 7742 BCE
• QxA-4219: 7737 – 7454 BCE
• QxA-4220: 7595 – 7178 BCE

Meanwhile, more than twenty samples from Craig Rhos-y-Felin and Carn Goedog fall within overlapping Mesolithic ranges between 8550 BCE and 6840 BCE.

If these dates are unrelated, their overlap could theoretically occur by coincidence. Radiocarbon dates always include uncertainty ranges, and overlapping intervals do not automatically prove that two events occurred at the same time.

To test whether this overlap could realistically occur by chance, the datasets can be examined using a statistical probability model.

(The Stonehenge Enigma; The Archaeological Evidence)

The Probability Model

To determine whether the matching radiocarbon ranges represent a genuine connection or a random coincidence, the Stonehenge Code applies a probability test.

The model compares each Stonehenge radiocarbon range with the radiocarbon ranges from the quarry samples. A match is counted when the entire quarry range falls within the Stonehenge range.

To estimate the likelihood of such matches occurring by chance, the calculation assumes that any quarry date could fall anywhere within a 10,000-year Mesolithic window spanning 10,500 BCE to 500 BCE.

The probability of a complete overlap is calculated using the following formula:

For example:

HAR-455 spans 1083 years.
A quarry sample spans 220 years.

This corresponds to odds of approximately 1 in 7.67.

The probabilities of all observed overlaps are then multiplied together to determine the overall likelihood that the complete pattern of matches could occur by chance.

Statistical Results

Applying this method to the full dataset produces the following combined probabilities:

Stonehenge SampleQuarry MatchesCombined Probability
HAR-455122.29 × 10⁻¹¹
GU-5109104.41 × 10⁻¹²
HAR-45617.70 × 10⁻²
QxA-421923.38 × 10⁻³
QxA-422032.99 × 10⁻⁴

When these probabilities are multiplied together, the overall probability that the observed pattern of overlaps occurred randomly becomes approximately:

1 chance in 1.27 × 10²⁹

In everyday terms, this represents odds of roughly one chance in one hundred and twenty-seven octillions.

Interpretation

Such extremely small probabilities indicate that the matching radiocarbon ranges between Stonehenge and the Welsh quarry sites are unlikely to be coincidental.

Instead, the data strongly suggest that both sets of samples belong to the same period of activity.

If this interpretation is correct, it implies that bluestone quarrying in Wales and activity at Stonehenge took place during the Mesolithic rather than the Neolithic.

This conclusion would push the earliest phase of Stonehenge back to approximately 8300 BCE, making the monument thousands of years older than previously believed.

(The Stonehenge Enigma; The Archaeological Evidence)
(The Stonehenge Enigma; The Archaeological Evidence)

Implications

The implications of this shift are profound.

If Stonehenge began in the Mesolithic period, the monument can no longer be understood solely as a construction of early farming communities. Instead, its origins would lie within a much earlier landscape inhabited by hunter-gatherer societies.

This possibility raises fundamental questions about the technological abilities, social organisation and environmental knowledge of Mesolithic populations in Britain.

It also suggests that the rivers and waterways of post-glacial Britain may have played a far greater role in the transport of monumental stones than previously assumed.

The statistical evidence presented in the Stonehenge Code therefore does more than propose an earlier date for Stonehenge. It invites a reconsideration of the entire prehistoric framework within which the monument has traditionally been understood.

(The Stonehenge Enigma; The Archaeological Evidence)

For more detailed information, see our blog: https://prehistoric-britain.co.uk/the-stonehenge-code

PODCAST

Author’s Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and excerpts from the acclaimed Robert John Langdon Trilogy, a series of books that explore Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post-Glacial Flooding Hypothesis, which offer compelling evidence of ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

Pinkery Canal

The Victorian Engineering Project That Challenges Everything We Thought We Knew About Britain’s Ancient Dykes


Introduction

For years, one of the most common objections to Britain’s great prehistoric dykes has been remarkably simple. (Pinkery Canal: The Victorian Engineering Project)

“They’re too high.”

“There wouldn’t have been enough water.”

“They couldn’t have been used for transport.”

Pinkery Canal on Exmoor changes that debate forever.

Built around 1820, this remarkable engineering project carried water across one of the highest stretches of land in southern Britain. Its purpose remains debated, but the engineering itself is undeniable. Victorian engineers considered it entirely practical to construct a canal more than 400 metres above sea level, collecting water from reservoirs, springs, bogs and hillside runoff as it crossed the moor.

That single fact removes one of archaeology’s favourite objections.

More interesting still is why it was built.

Several interpretations suggest the canal formed part of a wider system intended to move or support the movement of minerals and other resources across difficult terrain, linking extraction sites with the estate’s developing transport network. Whether for transport, water power, or land improvement, the principle is the same: using water engineering to connect remote upland resources with places where they can be processed, distributed, or exported.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

That concept should sound familiar.

Across Britain, more than 1,500 ancient linear dykes cross the landscape. They are usually described as defensive boundaries, yet many display engineering characteristics that are difficult to reconcile with purely military functions. Could at least some have formed part of much earlier transport and water-management systems, linking quarries, rivers and settlements in much the same way that Victorian engineers attempted on Exmoor?

This article isn’t about proving Pinkery Canal is prehistoric, yet it should be noted that there are aspects of this canal that predate the Victorian construction date and maybe where the engineers obtained the original idea?

It’s about recognising that a documented nineteenth-century engineering project demonstrates something archaeologists have often dismissed—that high-altitude canals are entirely feasible, that they can be supplied by catchment water rather than a single river, and that long-distance water engineering for moving resources across the landscape is not only possible, but historically documented.

Perhaps it’s time to stop asking whether such systems could have existed…

...and start asking where else we should be looking.


 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

1. The Myth

For years, critics of Britain’s prehistoric dykes have repeated the same two objections.

“Nobody would build a canal hundreds of metres above sea level.”

“There wouldn’t be enough water to keep it supplied.”

Pinkery Canal on Exmoor demolishes both arguments.

Not because it became a great commercial success.

Not because every detail of its purpose is understood.

But because Victorian engineers actually designed and constructed it.

Nearly 9 km (5½ miles) long and lying over 400 metres above sea level, Pinkery Canal is undeniable proof that engineers considered high-altitude water engineering both practical and achievable.

That fact alone changes the debate.

Whether the canal ultimately fulfilled its intended purpose is almost irrelevant. Its existence proves that altitude was not considered an insurmountable obstacle, and that upland landscapes could provide sufficient water through reservoirs, bogs, springs, and intercepted surface runoff to justify the construction of a major canal.

In other words, two of the most frequently repeated objections to prehistoric canals are no longer objections at all.

The question is no longer:

“Could people build canals at high altitude?”

Pinkery Canal answers that with a resounding yes.

The real question is:

If the Victorians considered this perfectly feasible less than 200 years ago, why do archaeologists still insist prehistoric engineers could not have done the same?

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

2. The Engineering

Forget the archive for a moment.

Forget the arguments over dates.

Imagine Pinkery Canal had just been discovered using modern LiDAR, with no nineteenth-century documents to guide us. How would an engineer interpret the monument purely from its design?

The first impression is its sheer ambition.

Stretching for almost 9 km (5½ miles) across the southern slopes of Exmoor at more than 400 metres above sea level, Pinkery Canal is one of the most remarkable examples of upland hydraulic engineering ever attempted in Britain. It crosses exposed moorland, deep peat, boggy ground and numerous valley heads. This was not a casual drainage ditch dug by local farmers. It required planning, surveying, labour, and a clear engineering objective.

The canal begins at its western end with an artificial reservoir created behind a substantial embankment or dam. That single feature immediately challenges one of the proposed interpretations.

 (Pinkery Canal: The Victorian Engineering Project)
The reservoir – (Pinkery Canal: The Victorian Engineering Project)

Drainage systems are designed to remove water.

Reservoirs are designed to store it.

Those are fundamentally different engineering objectives.

If the intention had simply been to drain the moor, why begin by constructing a dam capable of impounding water? The reservoir suggests that water itself was regarded as a valuable resource requiring collection, regulation and controlled distribution rather than something to be discarded.

The route itself is equally revealing.

Rather than taking the shortest downhill path, as every modern drainage ditch on Exmoor does today, Pinkery Canal follows a long, sweeping contour across the hillside. Modern drainage channels cut almost directly downslope because their purpose is obvious: to remove water from the land as quickly and efficiently as possible.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

Pinkery does the exact opposite.

It deliberately remains on the hillside, maintaining a remarkably consistent elevation over many kilometres while gently curving around the contours. Every bend represents additional surveying, excavation and labour. Engineers do not introduce unnecessary curves into a project of this scale. Every deviation must therefore have served a purpose.

That purpose may lie in the hydrology itself.

Unlike a river-fed canal supplied by a single large watercourse, a contour canal can collect water progressively along its entire length. Every spring, emerging from the hillside, every bog, every valley-head seep, every small stream, and every episode of surface runoff flowing down the slope contribute additional water. Rather than relying on a single source, the canal effectively harvests water from its entire catchment.

This is one of Pinkery’s most important engineering lessons.

For years, critics have argued that high-altitude canals would never have possessed sufficient water. Pinkery demonstrates another solution entirely. In a wet upland landscape, rainfall, springs, peat bogs, and intercepted runoff constitute the water supply. The canal itself becomes a collector, gradually increasing its flow as it crosses the hillside.

The LiDAR evidence also reveals that the canal is far more sophisticated than the phrase “contour leat” suggests.

Detailed examination shows changing widths, varying bank forms and an undulating longitudinal profile rather than a perfectly level line. The route repeatedly approaches the heads of valleys and drainage features. Modern maps also show later north-south drainage channels cutting across the canal, demonstrating that subsequent engineers adopted a completely different solution to reclaim the moor. Their drains are short, straight and steep. Pinkery is long, sinuous and almost level.

These are two entirely different engineering philosophies.

The terminal arrangements are equally intriguing.

At both ends, the canal appears closely associated with quarry workings or extraction areas. At least one location has a defined track linking the quarry directly to the canal. At another, the canal appears to terminate in a carefully engineered widening adjacent to a palaeochannel rather than simply continuing into the valley below. If drainage had been the objective, extending the ditch a short distance downhill would have been the simplest solution. Instead, the engineering appears far more elaborate than a straightforward drainage outlet.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

Whether these features relate to transport, water management, construction, or another purpose remains uncertain, but they deserve far greater attention than they have received.

Perhaps the most striking conclusion is that, despite detailed archaeological surveys, no single interpretation successfully explains every aspect of the monument.

Transport explains some features but not others.

Drainage explains some features but struggles with the reservoir and the geometry.

Water power requires hydraulic calculations that have yet to be convincingly demonstrated.

Irrigation raises unanswered questions about distribution.

Each hypothesis explains part of the engineering.

No one yet explains the complete system.

That is precisely why Pinkery Canal remains so fascinating.

It is not simply an archaeological site.

It is a large-scale engineering puzzle.

And whatever its ultimate purpose, one conclusion is beyond dispute. Victorian engineers considered it entirely practical to build and supply a major contour canal more than 400 metres above sea level. In doing so, they demolished two of archaeology’s favourite objections in a single project: that high-altitude canals could not be built, and that there would never have been sufficient water to sustain them.

The real challenge now is no longer asking whether such engineering was possible.

Pinkery has already answered that question.

The challenge is understanding why it was designed exactly as it was.


 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

3. Pinkery and Car Dyke – More Similar Than You Might Think

At first glance, Pinkery Canal and Car Dyke appear to have nothing in common.

One crosses the high moorland of Exmoor.

The other traverses the low-lying Fenlands of eastern England.

One is traditionally regarded as Victorian.

The other has long been attributed to Roman engineers.

Yet when viewed as engineering projects rather than archaeological labels, the similarities become surprisingly difficult to ignore.

Both were constructed to move water across the landscape rather than simply allowing it to flow naturally downhill.

(Car Dyke - North Section)
Car Dyke reused in a similar fashion as Pinkery Canal – (Pinkery Canal: The Victorian Engineering Project)

Both follow carefully selected routes designed to exploit the surrounding topography rather than take the shortest possible course.

Both have uncertain purposes despite decades of archaeological investigation.

And both have been linked to the movement of heavy materials from extraction areas towards wider transport networks.

That last point is particularly interesting.

Several interpretations of Pinkery Canal suggest it formed part of a system for moving lime, minerals, or other resources across Exmoor. Whether by boat, a water-powered incline, or another engineering solution, the underlying objective appears to have been the same: to overcome difficult terrain and connect remote resources to the estate’s developing transport network.

That is remarkably similar to the engineering questions surrounding Car Dyke.

For generations, archaeologists have regarded Car Dyke simply as a Roman drainage canal.

Yet its extraordinary scale, remarkable straightness and strategic connections between rivers have always hinted at a far more ambitious purpose. Our own investigation concluded that Car Dyke makes far more sense as a transport corridor linking quarries, settlements, rivers and distribution centres across the Fenlands. Rather than creating an entirely new waterway, the Romans may have enlarged and engineered an existing prehistoric channel, transforming it into Britain’s largest canal-like transport route.

(Britain's Giant Prehistoric Waterways)

Pinkery demonstrates that this approach is neither unusual nor implausible.

Throughout history, engineers have repeatedly adapted existing landscapes rather than starting with a blank slate. Rivers have been canalised. Ancient roads have become Roman roads. Medieval tracks became turnpikes. Victorian railways often followed much older routeways.

Why should canals be any different?

Pinkery therefore provides something that has been missing from the debate over Britain’s prehistoric dykes.

It offers a documented example of engineers modifying a landscape, harvesting water from multiple natural sources and constructing a substantial canal in terrain that many archaeologists would previously have dismissed as impossible.

Pinkery demonstrate that the engineering principles behind our Car Dyke hypothesis are entirely realistic.

Instead of asking whether prehistoric engineers could have built such systems, perhaps archaeology should begin asking whether later engineers simply inherited, enlarged, and improved landscapes whose origins stretch much further back than the surviving documents.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

4. The Second Myth Falls – Where Did the Water Come From?

Perhaps the most common criticism of prehistoric canals is not their height, but their supposed lack of water.

The argument is usually presented as though every canal requires a single obvious source—a large river, a lake, or a permanent reservoir.

Without one, the idea is dismissed.

Pinkery Canal demonstrates that this assumption is far too simplistic.

When viewed from the ground, Exmoor appears to be little more than open moorland.

Viewed using modern LiDAR and historical mapping, however, an entirely different landscape emerges.

Pinkery crosses one of the wettest upland environments in southern Britain.

Its route intersects extensive peat deposits, blanket bog, spring lines, valley-head seepages, small streams and countless natural drainage pathways. Historical maps also show large areas of marshy ground surrounding parts of the canal, while later land reclamation introduced numerous straight drainage ditches to drain the landscape.

 (Pinkery Canal: The Victorian Engineering Project)
First Section By the Reservoir – (Pinkery Canal: The Victorian Engineering Project)

In other words, this was never a dry hillside.

It was a giant natural catchment.

That distinction is crucial.

Rather than relying on a single river to supply it, Pinkery appears to have been designed to collect water progressively as it crossed the landscape. Every period of rainfall generated surface runoff from the higher ground above. Every spring emerging from the peat contributed additional flow. Every valley head intercepted by the canal became another source of water.

The canal itself became the collector.

This is a completely different hydraulic principle from the one usually imagined by archaeologists.

Instead of asking:

“Where is the river feeding the canal?”

Perhaps the better question is:

“How much water does the entire catchment above the canal produce?”

Once viewed in that way, the engineering begins to make far more sense.

The long, curving alignment is no longer simply following a contour.

It is harvesting water from an entire hillside.

Every bend allows the canal to intercept another small drainage system. Every kilometre increases the contributing catchment. Rather than relying on a single large source, the available water gradually accumulates along the route.

 (Pinkery Canal: The Victorian Engineering Project)

This also explains why the western reservoir becomes so important.

The dam provided an initial stored supply, ensuring water was available even during drier periods, while the remainder of the canal progressively collected additional inflows from springs, bogs and hillside runoff.

Together they formed a single hydraulic system.

Ironically, the modern drainage network demonstrates the exact opposite of the engineering philosophy.

Today’s straight north-south drainage ditches were constructed to remove water from the moor as quickly as possible. They cut directly downslope, rapidly carrying water away from the peat and into the valleys below.

Pinkery does the reverse.

Instead of losing water, it captures it.

Instead of accelerating drainage, it intercepts it.

Instead of taking the shortest route downhill, it deliberately remains on the contour, collecting water from every natural drainage feature it encounters.

This distinction is fundamental.

The canal was not simply crossing a wet landscape.

It appears to have been designed around it.

For students of Britain’s prehistoric dykes, this observation is particularly significant.

One of the most common objections to their interpretation as waterways has always been the supposed absence of a large feeder river. Pinkery demonstrates another engineering solution entirely. A canal does not necessarily require a single major water source. Given the right landscape, it can harvest countless smaller sources distributed across an entire catchment.

Whether Victorian engineers consciously calculated this in modern hydrological terms is almost irrelevant.

Their design shows they understood the principle.

And if nineteenth-century engineers recognised that an upland landscape of springs, bogs and runoff could sustain a canal, perhaps archaeologists should think more carefully before dismissing similar possibilities elsewhere in Britain.


 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

5. If It Was Simply Drainage, Why Doesn’t It Behave Like a Drain?

One of the most revealing aspects of the Pinkery Canal is not where it begins or ends.

It is the shape of the engineering itself.

For nearly two centuries, the canal has frequently been described as a contour leat, with drainage often forming part of the explanation. Yet when the surrounding landscape is examined using modern LiDAR, an obvious question emerges.

If the objective was simply to drain the moor, why wasn’t it designed like every other drainage system on Exmoor?

The answer is surprisingly simple.

Because it wasn’t.

 (Pinkery Canal: The Victorian Engineering Project)
The end of Section One goes into a quarry past two other quarries – (Pinkery Canal: The Victorian Engineering Project)

Modern drainage ditches are easy to recognise. They follow the most efficient engineering solution possible. They are generally straight or only gently curved, taking the shortest practical route downhill. Their purpose is to quickly remove water from the land, reducing waterlogging and reclaiming boggy ground for agriculture.

The later drainage channels that cross the Pinkery Canal demonstrate exactly this principle.

Cutting almost directly north-to-south, they ignore the contours and descend rapidly into the valleys below. They waste no effort. They take the shortest available route because every unnecessary metre represents additional excavation and cost.

That is exactly what engineers designing a drainage system would be expected to do.

Pinkery Canal is completely different.

Instead of descending the hillside, it clings to it.

Instead of taking the shortest route, it extends for almost 9 kilometres in a broad sweeping curve.

Instead of accelerating water downhill, it appears to intercept it, retaining a remarkably consistent elevation across the landscape.

From an engineering perspective, those are not small differences.

They are fundamental.

Every bend required additional surveying.

Every curve required additional excavation.

Every extra metre increased both labour and construction costs.

Engineers simply do not introduce that level of complexity unless it serves a practical purpose.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

The obvious question, therefore, becomes:

What was the canal trying to achieve that a series of straight drainage ditches could not?

This is where the modern drainage network becomes unexpectedly useful.

Far from supporting the drainage interpretation, it provides a direct comparison between two completely different engineering philosophies.

The modern drains remove water.

Pinkery appears to manage it.

The modern drains cut across the landscape.

Pinkery works with it.

The modern drains dispose of water as quickly as possible.

Pinkery appears designed to collect water progressively from the surrounding catchment while preventing its immediate loss downslope.

These are not variations of the same design.

They are solutions to different engineering problems.

This distinction also helps explain why the canal repeatedly approaches the heads of valleys and natural drainage features. Rather than avoiding them, the alignment appears to exploit them. Every small stream, spring, or area of surface runoff that the canal intercepts becomes another potential source of water entering the system.

That behaviour makes perfect sense for a contour channel intended to harvest water.

It makes far less sense for a ditch whose sole purpose was drainage.

Perhaps the most telling observation is that Victorian engineers later constructed entirely different drainage works across the same landscape. If a simple drainage ditch had been the original objective, why wasn’t Pinkery built in the same way as the later drains?

The answer appears to be that it was never solving the same problem.

Pinkery Canal may ultimately have failed to achieve its intended purpose, but its geometry reveals something important.

It was not engineered as the quickest way to drain Exmoor.

It was engineered to control water.

Understanding that distinction is the key to understanding the monument itself—and perhaps to understanding many of Britain’s much older linear earthworks as well.


 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

6. The Reservoir – Storing Water or Removing It?

Perhaps the single most overlooked feature of the entire Pinkery Canal system lies at its western end.

Before the canal even began, the Victorian engineers constructed a substantial embankment, creating what is now known as Pinkery Pond. This artificial reservoir formed the head of the entire system, storing water before it entered the canal.

At first glance, this may appear entirely unremarkable.

In reality, it may be one of the most important engineering clues on the site.

Think about the logic.

If your primary objective is to drain a wet upland landscape, why begin by constructing a dam?

Drainage and reservoirs represent two fundamentally different engineering philosophies.

A drainage system is designed to remove water from the landscape as efficiently as possible. Every engineering decision seeks to accelerate the movement of water downhill, reducing flooding, drying peat and reclaiming land for agriculture.

 (Pinkery Canal: The Victorian Engineering Project)
The Canal can not operate as a single entity without the paleochannel being full of water – (Pinkery Canal: The Victorian Engineering Project)

A reservoir does exactly the opposite.

It captures water.

It stores water.

It regulates water.

It delays its release.

Those are not minor differences.

They are completely different engineering objectives.

This immediately raises an obvious question.

Was Pinkery Canal ever intended to function as a simple drainage ditch?

The reservoir suggests otherwise.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

Instead of treating water as a nuisance, the engineer appears to regard it as a valuable resource that requires careful management. Water could be impounded during wetter periods, creating a reserve that could maintain flow through the canal even when natural runoff declined.

That interpretation fits remarkably well with the canal’s overall design.

As discussed previously, the canal follows a long contour across one of the wettest landscapes in southern Britain. Rather than rapidly discharging water into the nearest valley, it intercepts springs, bogs, valley-head seepages and surface runoff along its entire route. The reservoir therefore appears to provide the initial supply, while the surrounding catchment progressively replenishes the system as it continues eastwards.

Viewed together, the dam and canal form a single hydraulic network rather than two unrelated engineering works.

This also explains why the reservoir should not be dismissed as merely a convenient pond.

It was an integral part of the design.

Without stored water at the head of the system, the canal would have been entirely dependent upon seasonal rainfall. By constructing a reservoir first, Victorian engineers introduced a degree of hydraulic control, allowing water levels to be managed instead of simply reacting to whatever nature provided.

Once again, this differs fundamentally from the later drainage ditches that now cross the moor. Those channels require no reservoirs because their purpose is simply to remove water from the landscape. Gravity performs all the work.

Pinkery required something far more sophisticated.

It required water to be available when needed.

 (Pinkery Canal: The Victorian Engineering Project)
End of section one shows a quarry and a road to the Canal (Pinkery Canal: The Victorian Engineering Project)

That simple observation creates difficulties for several of the traditional interpretations. If the canal existed only to drain land, the reservoir appears unnecessary. If it existed to transport water, power machinery, or support navigation, however, regulating and storing water would be much easier to understand.

The reservoir, therefore, becomes much more than an isolated feature at the western end of the canal.

It becomes the first component in a carefully engineered hydraulic system.

Whether that system ultimately succeeded is almost secondary.

Its design demonstrates that the engineers were not simply trying to get rid of water.

They were trying to control it.

And that distinction may prove to be one of the most important lessons Pinkery Canal has to offer—not only for understanding this remarkable Victorian project, but also for reconsidering how similar large-scale water engineering systems elsewhere in Britain have been interpreted.

You’re right. I was too generic. If we’re referring to the report, we should discuss the profiles by number and what each demonstrates, rather than making broad statements.

Here’s a much stronger version.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

7. The Engineering Puzzle: What the Profiles Actually Reveal

One of the strengths of the Historic England survey is that it did not simply record the canal’s position. It excavated and measured cross-sections along its entire length, producing sixteen profile drawings that reveal something far more interesting than the accompanying interpretation acknowledges.

Far from being a uniform ditch, the Pinkery Canal constantly changes its form.

 (Pinkery Canal: The Victorian Engineering Project)

Profiles 1–5 show a relatively consistent engineered channel cut into the hillside, but even here the uphill and downhill banks vary considerably in both height and width. This immediately suggests the builders were responding to local ground conditions rather than applying a single standard design.

Profiles 6–11 become even more revealing. Here, the downslope bank becomes substantially larger in places, while the uphill side often appears much less pronounced. If the feature was merely intended as a drainage ditch, this extra effort seems unnecessary. Gravity already removes water downhill. There would be little reason to build and maintain substantial retaining banks on the downhill side.

Instead, these profiles make far more engineering sense if the objective is to retain water within the channel while preventing it from escaping downslope.

Profiles 12 and 15 are particularly interesting because the canal becomes much deeper on one side, reflecting the increasing side slope of the hillside. Rather than abandoning the contour, the builders modified the earthworks to maintain the channel despite increasingly difficult terrain. That is a considerable investment in engineering effort.

By contrast, Profile 16 shows a much more symmetrical section, suggesting that local topography again dictated the amount of excavation and banking required. The canal was clearly being adapted to changing ground conditions rather than simply being cut to a single standard template.

Perhaps the most important observation is what none of the profiles shows.

None resembles a simple modern drainage ditch.

Modern drainage systems generally seek the quickest route downhill using relatively uniform cuts. Pinkery repeatedly does the opposite. Its profiles demonstrate deliberate construction to maintain a contour route while containing water against the land’s natural fall.

The retaining banks become key evidence.

On a hillside, any water entering the canal naturally wants to escape over the lower edge. The substantial downhill embankments shown in many of the profiles would have acted as retaining structures, keeping water within the channel while intercepting runoff from bogs, springs, and small streams higher on the slope.

Ironically, the report illustrates all of this beautifully but never fully explores its engineering implications. The profiles are presented as descriptive archaeology rather than as evidence of hydraulic design.

Yet these drawings may contain one of the most important clues to understanding the Pinkery Canal.

They show that the builders were not simply digging a ditch.

They were designing a hydraulic system whose cross-section changed repeatedly in response to the landscape.

That is engineering.

The real mystery is not whether the builders understood hydraulics.

The profiles prove they did.

The mystery is what hydraulic problem they were actually trying to solve.

I think this is a good conclusion, but I’d make one important change. I would avoid saying “this is why canals failed in Britain.” Historically, Britain’s canal network was hugely successful for decades before railways largely displaced it. A stronger and more accurate point is that lock canals trade speed for flexibility. Every lock introduces a delay, whereas a contour canal with continuous water offers uninterrupted movement.

Here’s how I’d write the conclusion.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

8. What Pinkery Canal Really Teaches Us

Pinkery Canal remains one of Britain’s most fascinating engineering puzzles.

Almost two centuries after its construction, archaeologists still cannot agree upon its purpose. Was it built for transport? Water power? Irrigation? Land improvement? Water management? Every interpretation explains part of the evidence, yet none successfully accounts for the monument as a complete engineering system.

Perhaps the problem is not the evidence.

Perhaps it is the questions being asked.

Throughout this investigation, we have deliberately set the archive aside and examined the monument as engineers would.

In doing so, several important conclusions emerge.

First, Pinkery Canal proves beyond doubt that high-altitude canals are entirely feasible. Victorian engineers had no hesitation in constructing a major contour canal more than 400 metres above sea level. The argument that upland canals are somehow impossible can therefore be dismissed.

Second, Pinkery demonstrates that canals do not necessarily require a major river to function. By combining a reservoir with intercepted springs, bogs, valley-head seepages and surface runoff, the canal could potentially harvest water from its entire catchment. The landscape itself became the feeder system.

Third, the monument’s geometry differs fundamentally from a drainage ditch. Instead of removing water as quickly as possible, it appears to be designed to intercept, retain, and regulate it. The substantial banks recorded in the cross-sectional profiles reinforce this interpretation, showing engineering adapted to controlling water rather than simply disposing of it.

Finally, Pinkery reminds us that ancient and historic engineers were often far more inventive than we give them credit for.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

Today, when we think of canals, we instinctively picture straight channels linked together by locks.

That is understandable because lock canals dominated Britain’s Industrial Revolution.

But lock systems come at a cost.

Every lock interrupts the journey.

Boats must stop, water levels must be altered, gates opened and closed, and only then can the journey continue. Over a long route, those delays accumulate significantly.

A contour canal operates on a completely different principle.

Once water is established within the channel, a boat can continue along the contour without repeatedly stopping to negotiate locks. The route may be longer, but movement is continuous.

That is an elegant engineering solution.

Its weakness, however, is equally obvious.

Everything depends upon maintaining a reliable water supply.

If the reservoir feeding Pinkery Canal could not provide sufficient water during prolonged dry periods, the entire system would struggle to operate effectively. Whether this ultimately contributed to its limited success remains an intriguing possibility, although the surviving evidence cannot yet answer that question with certainty.

This comparison also helps explain why Britain’s prehistoric dykes deserve far more serious investigation.

Features such as the Car Dyke, the Wansdyke, and Offa’s Dyke have often been viewed through the lens of defence or territorial boundaries. Yet if naturally fed springs, groundwater and higher prehistoric water levels provided a more dependable year-round supply than an artificial upland reservoir, then the hydraulic possibilities become considerably more interesting.

Pinkery does not prove that Britain’s prehistoric dykes were canals.

What it does prove is something equally important.

Many of the engineering objections used to dismiss that possibility are no longer sustainable.

High-altitude canals are possible.

Catchment-fed canals are possible.

Long-distance contour engineering is possible.

Victorian engineers demonstrated every one of those principles.

Perhaps the greatest lesson from Pinkery is not about Victorian engineering at all.

It is a reminder that we should never underestimate the ingenuity of earlier societies simply because their achievements do not fit our modern expectations. Every generation builds upon the knowledge of those who came before it. If nineteenth-century engineers recognised the advantages of contour water engineering, it is entirely reasonable to ask whether they were rediscovering principles that had been understood long before the Industrial Revolution.

That is why sites like Pinkery Canal deserve to be studied—not simply as isolated archaeological curiosities, but as windows into the long history of engineering innovation that shaped Britain’s landscape.

 (Pinkery Canal: The Victorian Engineering Project)
(Pinkery Canal: The Victorian Engineering Project)

PODCAST

Author’s Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and excerpts from the acclaimed Robert John Langdon Trilogy, a series of books that explore Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post-Glacial Flooding Hypothesis, which offer compelling evidence of ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

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The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

Introduction

Before we examine Bulford itself, one point must be made clear.

The archaeology is not the problem. The postholes, pits, circular features and later activity are real and important. What is being challenged here is the story built on top of them.

Once again, the Stonehenge landscape is being interpreted backwards. A few physical features are lifted from their environmental setting, joined by lines on a plan, wrapped in ritual language, and then presented to the public as another breakthrough in sacred Neolithic astronomy.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

But prehistoric landscapes were not flat ceremonial diagrams. They were working environments shaped by rivers, groundwater, dry valleys, palaeochannels, springs, ditches, routeways and changing water levels. Before any feature is called a temple, a henge, a sacred boundary, or an “older Stonehenge,” the physical landscape must be understood first.

That is the failure this article addresses.

Bulford may be important for archaeology. It may even tell us something valuable about the wider Stonehenge landscape. But it does not yet prove a Stonehenge prototype, a solar monument, or a lost ceremonial masterplan.

It proves something far more revealing: how quickly archaeology can turn holes in the ground into a belief system.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

1. The Discovery Is Real — The Story Is the Problem

The Bulford discovery should not be dismissed. It is real archaeology, found in a genuinely important part of the wider Stonehenge landscape. The site lies only a few kilometres from Stonehenge, within a landscape already packed with prehistoric activity: pits, postholes, ring ditches, circular features, burials, routeways, river valleys and later reuse. Nobody serious should pretend that Bulford is insignificant. The issue is not whether something was found. The issue is what has been claimed from it.

At the centre of the new story are two substantial postholes, positioned about 120 metres apart. These are interpreted as the remains of two large timber posts, possibly standing several metres high. When a line is drawn between them, the axis is said to match the midsummer sunrise in one direction and the midwinter sunset in the other, around 2950 BC. From that observation, the public story has grown quickly: Bulford becomes a solar monument, perhaps a ritual gathering place, perhaps even a prototype for Stonehenge’s later solstitial alignment.

That is the point where caution should begin.

Two postholes are evidence for two posts. They are not, by themselves, proof of a monument. A line drawn between two posts is evidence of geometry. It is not, by itself, proof of prehistoric intention. A possible alignment with the sun is interesting, but it does not automatically prove religion, ceremony, sacred architecture, or a direct ancestral link to Stonehenge.

The difference matters because archaeology often changes shape as it moves from excavation report to media headline. In the ground, the evidence is limited and physical: holes, fills, deposits, artefacts, relationships, levels, cuts and dates. In the headline, that evidence can become something much larger: belief systems, sacred landscapes, cosmic order and lost temples. The danger is not that archaeologists find nothing. The danger is that they find something real, then overload it with meaning before the basic physical questions have been answered.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

Bulford is a perfect example of that problem.

The site was not a simple empty field containing two isolated posts. It contained numerous other features: smaller pits, late Neolithic activity, animal bone, pottery, flint, prehistoric ring ditches and later phases of landscape use. That complexity should make interpretation slower, not faster. A crowded archaeological landscape increases the danger of selection. If many pits, cuts, alignments and later features exist within the same excavated area, then choosing two large postholes and drawing a meaningful line between them requires strong independent support. Otherwise, the interpretation risks becoming circular: the posts are important because they align, and the alignment is important because the posts are assumed to be important.

The date also needs care. A Late Neolithic date of around 2950–3000 BC may place the feature in a significant period, but a date alone does not automatically explain its function. Radiocarbon dating can tell us when the sampled material died or entered a deposit. It does not automatically tell us why a post was erected, how long it stood, whether it belonged to a wider structure, or whether later activity has been folded into the same story. The more complex the site, the more dangerous it becomes to treat one attractive date as a label for the entire interpretation.

The same caution applies to the word “prototype.” That word sounds exciting, but it smuggles in a historical relationship that has not yet been proven. To call Bulford a prototype for Stonehenge implies developmental sequence: first Bulford, then Stonehenge; first timber posts, then stones; first simple alignment, then monumental architecture. That may be possible, but possibility is not proof. Similarity is not descent. Earlier is not necessarily ancestral. Nearby is not necessarily connected.

This does not make the Bulford discovery unimportant. It may be very important. It may show that people in this part of Salisbury Plain were using timber posts, pits and landscape markers before the later stone phases of Stonehenge. It may show that the solstitial axis mattered to some communities earlier than usually assumed. It may even eventually prove part of a wider prehistoric pattern.

But that has not yet been demonstrated.

The excavation is real. The archaeology is valuable. The postholes deserve serious study. But the interpretation has already moved beyond the secure evidence. Before Bulford can be called an older Stonehenge, a solar temple, or a ceremonial prototype, the basic questions must be answered.

Why only two posts?

Why 120 metres apart?

Why this exact location?

What was the surrounding landscape like at the time? Were the nearby pits, ring ditches and circular features contemporary, or are separate phases being compressed into one narrative? Was the alignment designed by the builders, or recognised later by modern researchers looking back across a crowded plan?

Until those questions are answered, Bulford proves something important, but much narrower than the headline suggests.

It proves repeated prehistoric activity in a significant landscape.

It does not yet prove the existence of an older Stonehenge.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

2. From Two Postholes to an Older Stonehenge

The problem with the Bulford story is not that the postholes are imaginary. The problem is the speed at which two postholes have been converted into an “older Stonehenge.”

The interpretive chain is easy to see. First, two substantial postholes are identified. Then a line is drawn between them. That line is said to align with the midsummer sunrise and midwinter sunset around 2950 BC. The alignment is then treated as deliberate. Once deliberate, it becomes astronomical. Once astronomical, it becomes ritual. Once a ritual, it becomes ceremonial. Once ceremonial, it becomes a possible prototype for Stonehenge itself, given its proximity.

That is a very long journey from two holes in the ground.

Each step in that chain needs proof. It is not enough for each step to sound interesting. Archaeology should not work by accumulating attractive possibilities until they begin to look like a conclusion. The question is not whether the Bulford line can be drawn. Of course it can. The question is whether the line was intended by the people who dug the postholes.

That is a much harder thing to prove.

Two points always create a line. That is geometry, not archaeology. If the two points are large postholes, the line may be worth examining. If that line corresponds to a solar event, it becomes more interesting. But “interesting” is not the same as “proven.” To move from coincidence to intention, there must be supporting evidence: repeated alignment, structured layout, associated sighting features, restricted viewing position, consistent construction logic, or independent evidence that the same alignment governed other features at the site.

Without that support, the interpretation risks becoming backwards. Instead of starting with the whole site and asking what pattern the evidence produces, the process begins with an attractive alignment and then searches for meaning around it.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

This is especially dangerous in a dense archaeological landscape. Bulford was not an empty field containing only two posts. It contained many pits, postholes, finds, ring ditches and later prehistoric activity. In such a landscape, selection is everything. If enough features exist, lines can be drawn between them. Some will point to something interesting. Some may match the sun, moon, horizon, river, valley, hilltop or another monument. The existence of a line does not prove that the line was the site’s purpose.

That is why the “gunsight” idea needs caution. Two posts 120 metres apart could create a visual axis, but they could also have served another function entirely. They may have marked a route, entrance, boundary, landing point, working area, viewing corridor, territorial signal, seasonal marker, or something more practical connected to the local river landscape. They may not even have belonged to the same original conceptual phase as later features now being drawn into the interpretation.

The problem becomes worse when the alignment is turned into a solar monument.

A solar alignment does not automatically make a monument religious. Prehistoric people certainly observed the sky. Nobody needs to deny that. Seasonal knowledge mattered in every farming, hunting, fishing, travelling and trading society. The movement of the sun helped organise time, weather, light, animal behaviour, plant growth and movement through the landscape. But recognising the importance of the sun is not the same as proving that a specific pair of posts formed a ceremonial temple.

This is where modern language starts doing too much work. Once words such as “ritual,” “ceremonial,” “sacred,” and “cosmological” are introduced, the evidence becomes harder to challenge because the claim becomes less physical. A posthole can be measured. A fill can be sampled. A date can be tested. A horizon can be modelled. But “ritual significance” can expand to cover almost anything. It becomes a label placed over uncertainty.

Then comes the final leap: Bulford as an older Stonehenge.

That is the weakest step of all. For Bulford to be an older Stonehenge, it is not enough to say it is older, nearby and possibly aligned. There must be a demonstrated structural or functional relationship between the two sites. Otherwise, the phrase “older Stonehenge” is doing more media work than archaeological work. It borrows the fame of Stonehenge to inflate the importance of Bulford before Bulford has been understood on its own terms.

This is a common problem in the Stonehenge landscape. Every new discovery is tempted into the same orbit. A pit becomes a ritual pit. A post becomes a solar marker. A ditch becomes ceremonial. A circular feature becomes a henge. A henge becomes a sacred site. And once Stonehenge is mentioned, the interpretation begins to feel larger than the evidence.

Bulford deserves better than that.

The correct starting point is not Stonehenge. It is Bulford itself: its topography, its water setting, its local features, its sequence, its fills, its dates, its relationship to the Nine Mile River and Avon landscape, and the possibility that later activity has been compressed into a single attractive story.

A line between two postholes is interesting.

It is not proof of intention by itself.

And it is certainly not proof of an older Stonehenge.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

3. The Durrington Warning: When Pits Become Cosmology

Bulford is not the first time the Stonehenge landscape has produced this problem. Durrington Walls provides the warning.

In 2020, archaeologists announced what was described as a major new prehistoric structure around Durrington Walls. The claim was dramatic: a circuit of large pits or shafts, more than two kilometres across, apparently arranged around Durrington Walls and Woodhenge. Some of these features were described as more than ten metres wide and up to five metres deep. The suggested date was around 2500 BC, broadly contemporary with major Late Neolithic activity in the Stonehenge landscape.

That was the physical claim.

The interpretation then moved much further.

The pits were not simply presented as pits. They became a boundary. The boundary became a sacred precinct. The sacred precinct was linked to Durrington Walls, Woodhenge and the earlier Larkhill Causewayed Enclosure. The spacing was then interpreted as evidence of planning, counting, pacing and cosmological order. What began as a group of subsurface features evolved into a vast sacred landscape organised around religious meaning.

That is the same interpretive inflation now being seen at Bulford.

The issue is not whether Durrington contains real archaeology. It clearly does. Nor is the issue whether some of the large features may have been human-made or modified. They may well have been. The problem is the leap from physical evidence to cosmology. A large pit is not automatically a ritual shaft. A group of pits is not automatically a sacred boundary. A wide arc of features does not automatically prove a planned religious enclosure. And a relationship to nearby monuments does not automatically make the whole arrangement ceremonial.

This matters because the Stonehenge landscape is not a flat drawing board. It is a chalk landscape cut by valleys, dry river systems, solution hollows, palaeochannels, springs, slopes, buried deposits and former water routes. Features that look convincing when plotted on a plan may have been shaped by the physical landscape long before they were given ritual meaning.

That is the hydrology problem at Durrington.

Some of the Durrington features sit in or near valley systems trending towards the Avon. Others have been discussed in relation to natural solution features, sinkholes, soft patches, head deposits or complex subsurface formations. Once that is admitted, the interpretation changes. The question is no longer simply, “Do these pits form a circle?” The better question is, “Are we looking at a single sacred boundary, or a mixture of pits, modified hollows, water-related features, palaeochannel activity, extraction cuts and later reuse being forced into one monumental pattern?”

That question was never properly allowed to lead the discussion.

If an ancient water landscape existed around Durrington, then the so-called pit circle may not represent a sacred exclusion zone at all. Some features may relate to former drainage lines, water access, shoreline positions, dykes, routeways or changing river levels. A palaeochannel can create lines. A former river edge can attract repeated activity. A changing water table can expose, fill, preserve and distort features across long periods. None of this requires a cosmological boundary.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

The shell dates make this harder to ignore.

In the published Durrington radiocarbon data, shell samples from cored features produced Holocene dates. One shell sample from 4.80–4.85 metres produced a calibrated date of 6080–5990 BC. Another, from 1.50–1.55 metres, produced 4710–4550 BC. A third, from 4.35–4.40 metres, yielded a date of around 3810–3690 BC.

These are not Cretaceous fossil numbers. They are Holocene numbers.

That matters enormously for the wider Stonehenge debate. One of the standard objections to shell evidence in Stonehenge boreholes is that shells in chalk must be ancient fossils and therefore irrelevant to recent water activity. But Durrington creates a problem for that dismissal. Here, a shell was recovered from deep chalkland contexts, submitted for radiocarbon dating, and produced dates in the post-glacial and early/mid-Holocene window.

The official response was to treat the early shell dates as unreliable, possibly affected by calcium in the sediment. That may be possible. But it does not remove the problem. It simply exposes it. If shell dates support a neat Neolithic monument story, they are useful. If shell dates suggest an older water-rich landscape, they become inconvenient.

That is not good enough.

The correct response should have been a further environmental investigation. What species of shell were recovered? Were they freshwater, terrestrial, intrusive, redeposited, or connected to standing water? Why were they present at those depths? What do they say about water, sediment movement and local hydrology? And why should similar shell evidence in the Stonehenge borehole record be dismissed as meaningless fossil contamination before it has been properly tested?

This is why Durrington matters for Bulford.

Durrington shows how easily a complicated physical landscape can be converted into sacred geometry. It also shows how water-related evidence can be pushed aside when it does not fit the preferred ceremonial model. Bulford risks repeating the same mistake on a smaller scale. Two postholes become an alignment. The alignment becomes solar. The solar axis becomes ritual. The ritual interpretation becomes an older Stonehenge.

But before that chain is accepted, the physical landscape must come first.

The lesson from Durrington is simple: do not turn pits into cosmology until the water has been explained.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
Paleochannels show water activity in Late Prehistory -The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

4. The Missing Water at Bulford

The first question at Bulford should not be astronomical. It should be geographical.

Where was the water?

That question is almost absent from the public interpretation, yet it should come before any claim about ceremony, solar worship or a Stonehenge prototype. Bulford sits within the wider Avon landscape, close to the Nine Mile River system and within a region where dry valleys, palaeochannels, river terraces, springs, groundwater movement and changing post-glacial water levels all matter. A prehistoric feature cannot be properly understood if it is lifted out of that physical setting and treated as if it stood in the same dry, open landscape we see today.

This is the central failure. The interpretation begins with two postholes and a solar line, then moves quickly towards ritual meaning. But before that line is made sacred, the entire terrain needs to be reconstructed to match its condition when the posts were built. Was the valley wetter? Was the Nine Mile River larger? Were there seasonal floods, marsh edges, channels, routeways or landing points nearby? Did the site overlook a water corridor? Were people moving through this landscape by river, along river edges, or between water-connected activity zones?

Without answering those questions, the interpretation is incomplete.

Water is not a decorative background to prehistoric life. It is infrastructure. Rivers are routes. Springs are resources. Wetlands are food zones. River edges are working margins. Palaeochannels preserve memory in the landscape long after active water has gone. If post-glacial rivers and groundwater levels were higher, then many features that now seem stranded in dry fields may originally have stood beside water, above water, or in relation to former channels.

That matters directly at Bulford.

If the two large posts stood near a route through the river landscape, their function may have been practical before it was symbolic. They could have marked access, direction, visibility, landing, movement, boundary, crossing, warning, gathering, or seasonal use connected to water. A tall post beside a water route is not automatically a religious object. It may be a marker. It may be a signal. It may be part of a working landscape.

The same applies to the so-called henges or circular features nearby. Before they are labelled ceremonial, their position and orientation need to be tested against the water landscape. If their entrances, openings, or strongest lines of access face the river system rather than Stonehenge, the usual interpretation changes. They may not be facing a sacred monument at all. They may be facing the practical landscape that made the site useful.

The size of the so-called Bulford henges should also make us cautious. Historic England records the western example as only about 17.5 metres across and the eastern example as about 16 metres in internal width, each with a northern entrance. These are not grand henge monuments. They are very small penannular enclosures, later encircled by Bronze Age ring ditches that enlarged them to about 27-30 metres in diameter.

That matters. Henges commonly range far larger, with even a 30-metre example described as being at the small end of the scale. By contrast, Bronze Age round barrows and ring ditches commonly fall within the 20–30 metre range. So when Bulford’s later ring ditches enlarge the features to 27 and 30 metres, they begin to look far more like barrow/ring-ditch reuse than a clear ceremonial henge pair.

This does not prove they were barrows. No central burial was found, and the western example only appears to have had a low internal bank or mound. But it does show that the word “henge” is carrying too much authority. A small penannular ditch with a northern entrance, later remodelled by Bronze Age ring ditches, overlooking the Nine Mile River, should not be rushed into the same ceremonial category as Stonehenge.

The better question is not “what ritual did these henges serve?”

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

The better question is: were these small river-facing features later reused, enlarged, altered, or reclassified as part of a ceremonial story because the landscape is now being interpreted backwards from Stonehenge?

This is where the “older Stonehenge” claim becomes especially weak. Stonehenge is being used as the interpretive magnet. Because Bulford is near Stonehenge, its features are pulled into a Stonehenge-centred story. But proximity is not a function. A feature near Stonehenge does not automatically exist because of Stonehenge, point to Stonehenge, anticipate Stonehenge, or explain Stonehenge. It may belong to an older and broader water-based system that Stonehenge itself later reused.

That possibility is far more important than the headline.

The same mistake recurs in the landscape of Stonehenge. Durrington becomes a sacred boundary before its hydrology is fully understood. Shell dates are considered inconvenient when they indicate older, water-rich conditions. Palaeochannels and dry valleys are treated as background geology rather than active prehistoric infrastructure. Linear earthworks are dismissed or mislabelled rather than tested as water-management features. Then the remaining unexplained features are wrapped in ritual language.

Bulford should not be allowed to follow the same path.

The correct method is simple. First, reconstruct the Mesolithic and Neolithic landscape. Map the Nine Mile River and Avon relationship. Identify former channels, springs, terraces, damp zones, routeways and possible shoreline positions. Compare the posts, pits, ring ditches and circular features against that reconstructed water system. Only then, ask whether a solar alignment was primary, secondary, coincidental, or later imposed by interpretation.

Until that work is done, the water explanation has not been eliminated.

And if the water explanation has not been eliminated, the ceremonial explanation has not been proven.

Bulford may still prove significant. But its significance may lie not in being an older Stonehenge, but in preserving another fragment of the working water landscape that existed before Stonehenge became the centre of the story.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The paleochannel data show that these were active in the Mesolithic – The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

5. Dating and Alignment Do Not Prove Function

Two things are being asked to carry the Bulford interpretation: a date and a line.

Both may be important. Neither proves the story by itself.

The public claim gives Bulford a Late Neolithic date, usually around 2950–3000 BC. That date is then attached to the proposed alignment between the two large postholes and used to suggest an early solar monument, possibly older than Stonehenge. But this is where the first major problem appears.

At present, the public information does not clearly show that the two large postholes themselves were directly dated from secure primary contexts. The published publicity refers to a wider group of pits radiocarbon dated to around 2950 BC. That is not the same thing as saying that the two large postholes were directly dated by material from their original post-packing, post-pipes, construction deposits, or base fills.

That distinction is crucial.

A date from the wider pit group is not automatically a date for the two-post alignment. It may date activity in the same landscape. It may date rubbish deposition. It may date to nearby occupation, feasting, burning, discarding, or later infilling. It may date material associated with the broader Bulford activity complex. But unless the dated samples came from secure contexts directly tied to the two large postholes, the alignment has been dated by association.

Association is not proof.

This is not a small technical objection. It goes to the centre of the claim. If the postholes were not directly dated, then the argument becomes a chain of assumptions: nearby pits are dated to around 2950 BC; two larger postholes are identified within the same excavated area; a line is drawn between them; that line is modelled against the sky at 2950 BC; the alignment is then interpreted as intentional; and finally the whole thing is presented as a possible prototype for Stonehenge.

That is not a secure sequence. It is an interpretive staircase, and every step needs evidence.

The correct question is simple: what exactly was dated?

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

Was the sample taken from the bottom of one of the two large postholes? Was it from primary post-packing? Was it from a post-pipe left by a decayed timber? Was it from the earliest fill after the post was removed? Was it from a later fill? Was it from nearby rubbish pits? Was it charcoal, bone, pottery-associated material, or something redeposited? Was there old wood? Was there later contamination? Were both postholes dated independently, or is one date being stretched across both?

Until those details are available, the claimed date should be treated as a date for Bulford’s wider Late Neolithic activity, not as a secure direct date for the supposed solar alignment.

This matters because prehistoric landscapes are often reused. A posthole can be earlier than surrounding pits, later than them, cut through them, respected by them, ignored by them, or reinterpreted by later activity. A landscape can contain several phases compressed into one archaeological plan. Without a clear formation sequence, a date becomes a label rather than proof.

The same caution applies to the alignment.

Two points always create a line. That is geometry, not archaeology. A line between two substantial postholes may be interesting, especially if it appears to match a solar event. But a solar match is not enough. To prove intention, there must be independent supporting evidence: repeated layout, associated sighting positions, consistent structural design, horizon control, entrance alignment, matching features, or a pattern too strong to be explained by selection.

Without that support, the alignment risks becoming retrospective. A modern researcher looks at a complex plan, notices two larger features, draws a line, checks the sky, and finds a possible match. That may be worth investigating. It is not yet proven that Neolithic builders created a solar monument.

The danger increases because the landscape contains many features. Bulford was not a clean two-post structure standing alone. It contained numerous pits, finds and later activity. In a crowded plan, some alignments will always appear meaningful if enough points are available. The more features there are, the more important it becomes to prove that the selected line was meaningful to the builders, not merely attractive to the interpreter.

This is where the claim becomes too ambitious.

A possible date does not prove a function. A possible alignment does not prove intention. Together, they still do not prove an older Stonehenge unless the connection is demonstrated by context, sequence and structure.

The date must be direct.

The alignment must be intentional.

The function must be evidenced.

Until then, Bulford remains an important Late Neolithic activity site with two substantial postholes and a possible solar alignment. That is interesting enough. It does not need to be inflated into a Stonehenge prototype before the basic archaeological chain has been proven.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

6. What Bulford Actually Proves

Bulford proves that this part of the Stonehenge landscape was important. That is the strongest safe conclusion. It does not need dressing up as an older Stonehenge to matter.

The site contains substantial postholes, numerous pits, finds of pottery, flint, animal bone, and charcoal, later ring ditches, and evidence of repeated prehistoric activity. That is already significant. It shows that people returned to this landscape, cut into it, deposited material, marked it, reused it and altered it across time. The archaeology deserves serious attention.

But that is exactly why the public claim should have waited for proper publication.

The Bulford excavations were carried out between 2015 and 2017. Yet in 2026, the full major publication is still not available, with the report promised later in the year. That means nearly a decade has passed since the excavation ended, and eleven years since it began, before the public has been given the detailed evidence needed to test the claims now being made.

That is not a minor issue. It is a fundamental archaeological weakness.

Before the plans, sections, context sheets, sample positions, radiocarbon tables, environmental data, stratigraphy and post-excavation reasoning are publicly available, the public is already being asked to accept a story: two posts become a solar alignment, the alignment becomes a religious monument, the religious monument becomes a Stonehenge prototype, and the whole thing becomes a breakthrough in our understanding of the ceremonial landscape.

But where is the published evidential chain?

Were the two large postholes directly dated from secure primary contexts, or has the date been imposed from associated pits? Were both postholes dated independently? Were the samples taken from post-pipes, packing deposits, base fills or later infill? What is the full sequence of the surrounding pits? Which features are contemporary and which belong to later reuse? How were the nearby ring ditches phased? How was the Nine Mile River landscape reconstructed? What was the local hydrology? Were former channels, springs, terraces or shoreline positions mapped before the solar interpretation was imposed?

Until those questions are answered in a full report, the headline is ahead of the archaeology.

This is the old Stonehenge problem in a new field. The interpretation is released first. The evidence follows later. By the time the technical report appears, the public story has already hardened into “fact.” Journalists have repeated it. Websites have archived it. Documentaries will quote it. Social media will simplify it. And critics will then be told they are challenging accepted archaeology, even though the original claim was accepted before the evidence was fully available.

That is how weak hypotheses become historical furniture.

Bulford may eventually prove part of an early solstitial tradition. It may show that timber markers were used in the wider Stonehenge landscape before the stone monument took its later form. It may even show that people gathered here seasonally. But those are conclusions that must come from the published evidence, not from a press release wrapped around a famous name.

At present, Bulford proves repeated prehistoric importance.

It proves activity.

It proves complexity.

It proves that the area needs proper publication and independent scrutiny.

It proves that the river-facing landscape east of Stonehenge has been underestimated.

It does not yet prove the existence of an older Stonehenge.

It has not yet proved to be a solar temple.

It does not yet prove a ceremonial masterplan.

It does not yet prove a Stonehenge prototype.

And it does not prove a dry ritual landscape detached from water, palaeochannels, groundwater, river access and post-glacial environmental change.

The proper conclusion is not that Bulford is unimportant. The proper conclusion is that it is too important to be sold by headline before the evidence can be tested.

Archaeology should not work on a press-release-first, proof-later basis.

Bulford does not reveal an older Stonehenge.

It reveals how quickly two holes in the ground can become a belief system — and how slowly archaeology sometimes publishes the evidence needed to challenge it.

The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t
They missed that Bulford Henges was on the edge of the Avon like Durrington Walls in the Mesolithic – The Bulford Hoax: The “Simpler, Older Stonehenge” That Wasn’t

PODCAST

Author’s Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and excerpts from the acclaimed Robert John Langdon Trilogy, a series of books that explore Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post-Glacial Flooding Hypothesis, which offer compelling evidence of ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

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Stonehenge Hoax – Summer Solstice

Introduction

Stone me – are the druids looking the wrong way!

(Book Extract, The Stonehenge Hoax – Summer Solstice)

The Problem

When we think about Stonehenge, our minds go to the mass gatherings of people who meet at the stones to celebrate the Summer and Winter Solstices, as if the monument were built for this single purpose.  But the structure was not made for this purpose, as shown by The Avenue and The ‘Heel Stone’( where the sun appears from behind it on midsummer’s day), for it is not in the centre of the Avenue (as some imagine) and consequently, it has been tilted at an angle to meet the sun at a later date.(Stonehenge Hoax – Summer Solstice)

The Solution

The Avenue follows a path to the River Avon, but the river reached the East of the site in Neolithic times; therefore, in theory, the Avenue could have been built anywhere.

Why did they build it in that particular direction? 

The original entrance to Phase I of Stonehenge was in the North-West, towards the midwinter moonset, perceived as the place of the dead and the afterlife, where they built a mooring station (the old car park) to take the Bluestones from Craig-Rhos-Y-Felin.

But after 4,000 years, the monument changed its purpose.  Four thousand years is a colossal amount of time – the same period before now, we were in the Bronze Age, living in mud huts and dancing to druid music.  In the landscape, we see this change with the disuse of Long Barrows for the collection of excarnated bones in favour of Round Barrows and the cremation of bodies.

The stonehenge hoax
Stukley’s Drawing of the Avenue – (Stonehenge Hoax – Summer Solstice)

If so, perhaps they decided to use the ancient monument from ‘curing the sick’ to ‘celebrating life’ and rebirth through the Sun.  This may explain why the Avenue was oriented towards the summer sunrise, and, in this case, gives us a clue to the date when Phase II (the Sarsen Stones uprights and lintels) were laid. 

We are familiar with the masses who welcome the midsummer sunrise over Stonehenge – people wait in expectation, and then (if you’re lucky) the Sun creeps over the Heel Stone to greet midsummer’s day; everyone’s happy, then goes home drunk or stoned.  BUT, when you look at the Heel Stone, it is on the extreme right-hand side of the Avenue, bent over at a silly angle.  Our ancestors did not build it that way – the monument was nearly completely rebuilt at the end of the last century, and stones were moved and restored, which has happened throughout Stonehenge’s long history.(Stonehenge Hoax – Summer Solstice)

Solar Alignment

The most sensible solstice alignment is straight down the middle of the Avenue.  However, archaeologists have only partially investigated this apparent alignment, and as a result, the construction date of Phase II has never been fully resolved.

The Sun does not always rise and set in the same place throughout the year or over the course of history, as you may expect.  The Earth ‘wobbles’ on its axis in a process known as ‘procession’ – I will not go into detail here, but all you need to understand is that the Sun and Moon rise and set in different positions on the horizon on solstice day over a 43,000-year period.

Solstice Sunrise Changes over Time - Stonehenge Summer Solstice
Solstice Sunrise Changes over Time – (Stonehenge Hoax – Summer Solstice)

This means that the summer and winter solstices move in relation to the horizon a fraction every year.  This movement is TINY; it’s .0002 of a degree every year, but over a long time, say 10,000 years, it’s a full two degrees.  It may not sound much, but when you consider that the moon is half a degree in diameter, then two degrees is the same as four moons (or suns) in a row on the horizon.

Dating of The Avenue and Stage II of Stonehenge

We can also ‘reverse engineer’ this figure to determine the date of the Avenue’s construction.  The problem with the accuracy of this measurement is that the point of sunrise is somewhat subjective, as trees obscure the horizon at Stonehenge, so the first rays of sunlight can never be fully seen.  What current observers accept is the position of the ‘Heel Stone’, which obscures the sunrise until the point at which it appears to rise above the stone’s upper part (the peak point).

The Avenue showing the summer solstice sunrise at the time of construction
The Avenue showing the summer solstice sunrise at the time of construction – (Stonehenge Hoax – Summer Solstice)

If we accept that this is the correct point for today’s Summer solstice sunrise and plot this point on Google Earth, we obtain a reading of 50.81 degrees.  If we now take a reading along the Avenue’s centre with the same software, we get 49.57 degrees.  This is a difference of 1.24 degrees since the Avenue was first constructed.  If the Sun moves 0.0002 degrees per annum, then we will have an approximate date (when the Sun is at the centre of the Avenue).  This gives us a construction date of 6200 years ago or 4180 BCE.

Stonehenge Summer Solstice
Sun Rise down the Avenue and over the Heel Stone – (Stonehenge Hoax – Summer Solstice)

This is thousands of years earlier than the archaeologists have told the public, so it is not mentioned in their literature.  However, one antler bone was found under a Sarsen stone, which does not support the current dating.  Now this one can’t be explained away like the other anomalies found on the site, as a 12-ton stone was on top of it for thousands of years, ensuring it couldn’t have been placed there later or floated/moved there from another part of the site.

Stone 27 - Stonehenge Summer Solstice
Stone 27 – Antler bone found in Stone 27 filling dated 4191 BCE – (Stonehenge Hoax – Summer Solstice)

It was found in the ‘packing’ for Sarsen Stone 27 (OxA-4902).  This gives us a carbon-dating range of 4342–4039 (IntCal20) or 4191 BCE ± 152, which is remarkably similar to the Avenue dating method.  The experts suggest that the antler was placed there by ‘accident’ and was found in the vicinity of the stone hole when the hole was first constructed – sadly, this is very improbable as the antler would have been some 1700 years old (if current theory dates are correct) and would have rotted and decomposed, even if found on or near the surface.

Therefore, I am happy to conclude that Stonehenge phase two started around 4185 BCE.

Stonehenge and the Summer Solstice: Are We Celebrating the Wrong Event?

Every year, thousands gather at Stonehenge to celebrate the summer solstice sunrise. Cameras point towards the Heel Stone, crowds cheer as the sun appears, and the monument is presented once again as Britain’s great prehistoric solar temple.

But what if that entire modern celebration is aimed at the wrong event?

The popular story assumes that Stonehenge was built as a circular solar temple, designed to greet the rising midsummer sun. The problem is that the stones themselves do not comfortably fit that story. Stonehenge was not a perfectly completed circle of uprights and lintels. Not all stones are present, not all holes support the idea of a complete ring, and some surviving stones appear too small or unsuitable to have carried lintels at all. This creates a serious problem for the standard reconstruction.

The usual answer is that Stonehenge was unfinished, robbed, damaged, or partly destroyed. But that explanation may be avoiding the more obvious possibility: Stonehenge was never meant to be a complete solar circle in the first place.

The monument makes far more sense if we stop treating it as a temple of the living sun and start seeing it as a monument to the dead.

Across many ancient cultures, the sun is associated with life, strength, fertility, kingship and daily renewal. The moon, by contrast, is repeatedly linked with death, night, spirit journeys, rebirth and the passage into the afterlife. A crescent moon is one of the oldest and most natural symbols of that transition: the death of one phase, followed by return, renewal and resurrection.

This is why the crescent form at Stonehenge matters.

Rather than being a failed circle, Stonehenge may have been deliberately designed as a crescent-shaped monument. Its symbolic focus would not have been the summer solstice sunrise, but the winter solstice sunset — the moment of greatest darkness, when the year reaches its lowest point, and the return of light begins. For a mortuary monument, that is a far more powerful idea. It is not a celebration of summer life but a turning point between death and rebirth.

stonehenge Hoax
Incomplete Circle and Stone 10 is too small for a lintel – The Stonehenge Hoax

This interpretation also explains why the south-western quadrant of Stonehenge is so important. The supposed “missing” stones are concentrated in the area most relevant to the winter solstice sunset alignment. If these stones had simply been robbed for building material, why would removal begin with the stones furthest from convenient access? Why would the pattern of loss fit the symbolic and astronomical weakness in the conventional solar-temple model?

The answer may be that they were not “missing” at all in the way archaeologists assume. Their absence may reflect the original design, later disturbance, or a deliberate alteration of the monument’s meaning.

The surviving trilithon arrangement also supports this argument. The great horseshoe of stones creates a crescent within a crescent. This inner form faces towards the summer solstice sunrise, but that does not necessarily make Stonehenge a summer temple. Instead, it may represent the rebirth element within a wider death-and-return system: the dead pass into darkness, but life continues through the descendants and survivors.

That message becomes even stronger when placed within the wider landscape. Stonehenge was surrounded by barrows, long barrows, burial routes and mortuary practices. It sits not as an isolated solar clock, but within a ritual landscape concerned with death, ancestry, movement, memory and transformation. The idea that the monument was simply built so people could watch the midsummer sunrise is far too narrow.

Winter alignment - Stonehenge Summer Solstice
Winter alignment – (Stonehenge Hoax – Summer Solstice)

The modern summer solstice celebration may therefore be celebrating a later misunderstanding — or even a later alteration — of the monument’s original purpose.

The Heel Stone alignment is often treated as the great proof of a summer sunrise temple. But if the monument’s deeper symbolic structure was lunar, crescent-shaped and connected with winter sunset, then the Heel Stone may represent a later reorientation of meaning. In other words, the public spectacle we see today may not preserve the original purpose of Stonehenge. It may preserve the moment when that purpose was changed.

Stonehenge, in this reading, was not built to celebrate the longest day.

It was built to confront the shortest one.

It was not a monument to summer crowds, sunlight and spectacle. It was a monument to death, darkness, ancestry and the return of life after loss. The winter solstice sunset, not the summer sunrise, is the event that matches its mortuary symbolism.

So when thousands gather at Stonehenge in June, they may be standing in the right place, but looking in the wrong direction.

The real Stonehenge was not a festival stage for the midsummer sun. It was a prehistoric monument to the dead — a crescent-shaped statement in stone, aligned with the deepest darkness of the year and the hope that light, life and memory would return.

The Stonehenge Hoax

Audio PodCast

Unearth the Astonishing Secrets of Stonehenge (The Stonehenge Hoax)

Book Video

Synopsys

Stonehenge, a timeless enigma etched in stone and earth, has stood as a formidable puzzle challenging the intellects of archaeologists and historians alike. Despite the myriad attempts, including books, TV programs, and academic conferences, the secrets of these ancient stones and their encircling ditches have proven elusive. Against this backdrop, we scrutinise the existing thirteen hypotheses, each presenting its narrative but collectively lacking a coherent thread.

In adopting the deductive reasoning akin to Sherlock Holmes, we endeavour to weave these disparate threads into a unified tapestry that not only unravels the mystery of Stonehenge but also shakes the foundations of established academic narratives. This intellectual journey may induce some discomfort as we challenge conventional perceptions and invite a reevaluation of our understanding of the past. Apologies are extended in advance for any cognitive dissonance, but the pursuit of truth and reason mandates an unfiltered presentation of the facts.

So, fasten your seatbelts for an expedition into the archaeological unknown.

As we navigate this intellectual rollercoaster, be prepared for a revelation that might reshape our understanding of Stonehenge and question the foundations of our historical narratives. The dawn of a new archaeological era awaits promising insights that could leave even the most curious minds astonished. As we delve into this intellectual rabbit hole, be ready for a revelation that could make Alice astonished.

Robert John Langdon (2023) – (The Stonehenge Hoax)

The Journey

Langdon’s journey was marked by meticulous mapping and years of research, culminating in a hypothesis that would reshape our understanding of prehistoric Britain. He proposed that much of the British Isles had once been submerged in the aftermath of the last ice age, with these ancient sites strategically positioned along the ancient shorelines. His groundbreaking maps offered a fresh perspective, suggesting that Avebury had functioned as a bustling trading hub for our ancient ancestors. This audacious theory challenged the prevailing notion that prehistoric societies were isolated and disconnected, instead highlighting their sophistication in trade and commerce.

In the realm of historical discovery, the audacious thinkers, the mavericks who dare to question established narratives, propel our understanding forward. Robert John Langdon is undeniably one of these thinkers. With a deep passion for history and an unyielding commitment to his research, he has unearthed a hidden chapter in the story of Avebury that transcends the boundaries of time and offers fresh insights into our shared human history.

As Langdon’s trilogy, ‘The Stonehenge Enigma,’ continues to explore these groundbreaking theories, it beckons us to embark on a journey of discovery, to challenge our assumptions, and to embrace the possibility that the past is far more complex and interconnected than we ever imagined. With its ancient stones and enigmatic avenues, Avebury continues to whisper its secrets to those who dare to listen, inviting us to see history through a new lens—one illuminated by the audacious vision of Robert John Langdon.

The Book

The Stonehenge Hoax
The Great Stonehenge Hoax

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives based on cutting-edge research, particularly using LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualizes my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp, also receive a re-evaluation based on LiDAR analysis in my posts Lidar Investigation Cissbury Ring through time and Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to the topic of ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts including Car Dyke – ABC News PodCast and Lidar Investigation Car Dyke – North Section, suggesting a Mesolithic origin2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis which has helped to inform the landscape transformations over time. I have discussed this hypothesis in several posts including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes the astronomical insights of ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

(Stonehenge Hoax – Summer Solstice)

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and extracts from the acclaimed Robert John Langdon Trilogy, a series of books exploring Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post Glacial Flooding Hypothesis, offering compelling evidence about ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

Other Blogs

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(Stonehenge Hoax – Summer Solstice)

Stonehenge Hoax – Dating the Monument

Introduction

Could Antler Picks build these Monuments……………….. (Extract from the Book -The Great Stonehenge Hoax)

The Problem

The first time real science could be used to date the ancient monument was when archaeologists   ‘carbon-dated’ the antler picks found within the ditch of the site, as it was assumed that these were the tools used to dig the ditches, which had been discarded as a ‘ritual’ at the bottom of the trench once it was completed.  Since then, archaeologists have attempted to justify these dates with all new finds on the site and have rejected as anomalies all other radiocarbon dates that don’t match its ‘established’ timescale.

The Solution

A type of tool widely found at Neolithic sites in North-Western Europe.  They are formed from a red deer antler from which all but the brow tine has been removed; the beam forms the handle, and the brow tine the ‘pick’.  They were used for excavating soil and quarrying out stone and bedrock.  The marks left by their use have been detected on the sides of ditches, pits, and shafts.  Experiments suggest that they were used more like levers than the kind of pickaxe swung from over the shoulder.  (Oxford Dictionary of Archaeology)

If you read any book or watch a program about archaeology and the construction of their monuments and sites, you will hear the experts talk about finding antler picks in the general vicinity and linking the structure with these objects.  As the description above indicates, these ‘tools’ are from red deer, which shed these natural growths annually.

According to archaeologists, this was the primary tool of prehistoric people – a natural resource that became a handy tool in excavating the ditches and digging holes in the chalk bedrock that surrounded most of their sites.  This is where the Victorian term ‘antler picks’ originates and still exists today, but for an unknown reason, this tool has now changed its use  (but not its name),  as archaeologists have now realised that if these ‘antlers’ were used to cut into hard bedrock chalk, they would leave blunt ends and scars from flint re-sharpening, which there is no evidence. 

Yet, if you look at any prehistoric report about the monument’s construction, you find a degree of ‘acceptance’ that antlers were used as the primary source of digging out the chalk downlands.  For example, here is a typical report from English Heritage’s ‘bible’ (Stonehenge in its landscape, 1995, Cleal et al.) and the use of Antler picks. (Stonehenge Hoax – Dating the Monument)

Typical Antler - Dating the Monument (Stonehenge)
Typical Antler – Dating the Monument (Stonehenge)

“Over 130 antler implements are known to survive from excavations by Gowland, Hawley, and Atkinson et al.  Antler implements have frequently been associated with Neolithic and Early Bronze Age monuments in Britain located on chalk or limestone, and it is generally assumed that they were the principal implements used in the digging of ditches, postholes and stone holes.

In a paper on the Neolithic, engineer Atkinson (1961) wrote, “the tools used – antler picks, bone wedges and occasionally stone axes – are well-known and require no further discussion.  However, some of the generalisations made in the literature about antler implements require modification in the light of the finds from Stonehenge.”

The Victorian Archaeologists found antlers throughout Stonehenge, particularly in the ditches that had filled over the years.  So, the conclusion was that no other tools – apart from antlers and bone parts had been used as these were the only remains found.  However, the only part of the antler that could successfully break the solid chalk is the harder ‘tines’. (Stonehenge Hoax – Dating the Monument)

English Heritage Display of Finds from Stonehenge showing Antlers with broken and not blunt tines - Dating the Monument (Stonehenge)
English Heritage Display of Finds from Stonehenge showing Antlers with broken and not blunt tines – Dating the Monument (Stonehenge)

The problem with the tines is that they all grow the same way, and so they would not naturally allow a clean strike at the chalk bedrock if used like a ‘pickaxe’ unless you removed two of the three tines.   And hence the ‘gobbledygook’ sorry line in Atkinson’s report, which says that “methods of modification and the forms of the picks are more varied than has been hitherto appreciated”.

If we are seeing systematic use and preparation of these tools (as has been suggested by archaeologists in the past), we should first see two clean cuts with a stone axe or cutter to ‘prune’ the antler and then secondly blunt and reshaped tines with compression strikes from a stone or another blunted instrument on the antler stem behind the tine spike – but we don’t! (Stonehenge Hoax – Dating the Monument)

How a Antler pick should look like if it was to work - Dating the Monument (Stonehenge)
How an Antler pick should look if it were to work – Dating the Monument (Stonehenge)

Of the 118 antler picks found at Stonehenge, 82 antlers had the harder tines attached.  Of the 82 with tines, only 25 had the other two smaller tines removed to make them usable; this is only 21% of the antler finds.   Moreover, none of the 25 picks that could have been used had compression marks or signs of sharpening. (Stonehenge Hoax – Dating the Monument)

Remembering that these 25 picks were the only finds within the Stonehenge area, which archaeologists have suggested was constructed in three phases over 700 years.

Grimes Graves Antler with flat point from use - Dating the Monument (Stonehenge)
Grimes Graves Antler with flat point from use – Dating the Monument (Stonehenge)

Moreover, in Phase I of the Ditch, Bank and the construction of the Aubrey holes (which would have contained the Bluestones from Wales).  It has been estimated that these tools are needed to remove 87,000 cubic feet of chalk, taking 30,000 working hours.  Yet, depending on the location where the discarded antlers were found, only seven suitable antlers were available with the correct tines removed; this would mean that each whole antler had removed 12,429 cubic feet of material without damage.

Sadly, even more implausible, we have not even considered the size of the antler.  The bigger, the better (more robust), and the longer the antler, the better the levering motion and the easier the ability to remove the chalk blocks. 

This being the case, they must have used the largest antlers possible, especially given the enormous number of Deer in Britain in prehistoric times compared to today.  Furthermore, bucks shed their antlers annually; there are 1.5 million Red Deers in Britain – therefore, the builders of Stonehenge could have chosen the best from at least a million shed antlers.

However, the evidence shows that this was far from the truth.  The distribution analysis shows that the sizes varied greatly with the number of antlers found.  The average length of a typical antler found at Stonehenge is just 210mm (8.5″), and some antlers are as small as 150mm (6 inches) in size – compared to the most significant found, which was 299mm (12 inches) in length, and only one of this size was found.  Antlers typically measure 710mm (28 in) in total length, although large ones can grow to 1150 mm (45 in). Consequently, they used the inferior antlers available?

The statistics we have obtained from English Heritage ‘could be much better’ and more accurate as they only measure the distance between the bur (the thickest part attached to the head) and the trez, which is the third tine up from the base bur.  The Trez is not the strongest tine on the antler – that is the brow.  However, there are so few antlers cut to this correct and more effective way that EH decided on this unorthodox method to compare sizes – even so, we can see these antlers were not selected for their size.  The Average size (distance from Bur to Trez) was 190mm (7.5″), some as small as 110mm (4″) – compared to the largest available of 410mm (16″).

This strange lack of evidence can also be seen in other monuments where even greater numbers of ‘antler picks’ would be required – but have not been found.  Such as Avebury, which has one of the most significant monuments in Britain, containing three stone circles within.   Current archaeological estimates suggest that it took 1.5 million working hours to build the Avebury monument, including digging out 3.4 million cubic feet of chalk, which is forty times larger than Stonehenge. (Stonehenge Hoax – Dating the Monument)

1922 Avebury excavation - Dating the monument (Stonehenge)
1922 Avebury excavation – Dating the monument (Stonehenge)

Excavation at Avebury has been limited.  In 1894, Sir Henry Meux put a trench through the bank, which gave the first indication that the earthwork was built in two phases.  The site was surveyed and excavated intermittently between 1908 and 1922 by a team of workmen under the direction of Harold St George Gray.  He could demonstrate that the Avebury builders had dug down 11 metres (36 ft) into the natural chalk using ‘red deer antlers’ as their primary digging tool, producing a henge ditch with a 9-metre (30 ft) high bank around its perimeter.  Gray recorded the base of the ditch as being four metres (13 ft) wide and flat, but later archaeologists have questioned his use of untrained labour to excavate the ditch and suggested that its form may have been different.  Gray found few artefacts in the ditch-fill, but he did recover scattered human bones, among which jawbones were particularly well represented.  At a depth of about two metres (7 ft), Gray found the complete skeleton of a 1.5-metre (5 ft) tall woman.  (Wikipedia)

Grey cut through the ditch and suggests the tools that built this structure, but the expected vast amounts of abandoned antler picks from their labour are minimal to non-existent.  The reality is that he found more human bones than antlers. (Stonehenge Hoax – Dating the Monument)

Used Neolithic Stone Axes found in Central Europe – a far more intelligent choice than an Antler? - Dating the Monument (Stonehenge)
Used Neolithic Stone Axes found in Central Europe – a far more intelligent choice than an Antler? – Dating the Monument (Stonehenge)

To highlight the absurdity of this antler myth, we need not look any further than English Heritage’s publication called ‘Radiocarbon Dates, from samples funded by English Heritage from 1981 – 1988’ – one would imagine that if we scratch below the surface of these monuments, the broken remains of the tools used to build these magnificent constructions would be obvious.  Instead, however, the book tells another story.

Of all the samples found, ‘Antler’ was the second-smallest, behind Animal Bone, Human Bone, Wood, and Charcoal, by a large margin.  Animal bone fragments were three times larger than antlers.  However, human bones were five times the most significant find – the reality is they found only three pieces of antler (one from the bank of Avebury in 1937,  one from West Kennet Avenue and one from the Avebury ditch in 1909), and even then, we are not sure what parts of the antler were found. (Stonehenge Hoax – Dating the Monument)

What was found in the Avebury Ditch - Dating the monument (Stonehenge)
What was found in the Avebury Ditch – Dating the monument (Stonehenge)

Therefore, how can a scientific discipline claim that these features were made from antler picks and shoulder blade shovels when only one antler fragment was ever carbon-dated at Avebury?

The truth is that this myth has grown around the excavations at Stonehenge in the last century, when archaeologists found antler picks in the ditches.  Carbon dating was a new science in the 1950s, and only organic samples could be dated – therefore, antler picks were perfect for testing out this unique dating process, and the site had just been ‘revamped’ by the Ministry of Works in 1958, to become a new tourist attraction – adding paths, concreting prehistoric sarsen stones and rehanging lintels. (Stonehenge Hoax – Dating the Monument)

Stone Axe used to cut ditches - Dating the Monument (Stonehenge)
Stone Axe used to cut ditches – Dating the Monument (Stonehenge)

Therefore, a new date in the distant past was excellent news for the media, and, consequently, the archaeological circus began and has never ended, with a constant need for publicity rather than sound science.

The reality is that rather than using antler picks to build these monuments, the workers used a much more resilient and more practical tool, which we know does not break as often and was abundant at the time of the construction of these sites – the stone axe.

This is the ONLY tool that could have been used to cut down the trees for these monuments – yet they put it away and used an inefficient antler tool to dig pits or ditches?  Such an idea is so absurd that it calls into question the expertise of those who continually suggest that the antler pick was used for such tasks and that the construction dates based on these tools are accurate.

Moreover, some have broken ranks in recent years and offered tantalising clues on a more rational explanation of our history and the deception game being played by academia. Mike Parker-Pearson in his book ‘Stonehenge’ revealed that they found ‘cut marks’ in the chalk in an excavation at Durrington Walls (Woodhenge) that looked like it was made from a ‘metal’ instrument.

This would make a lot more sense than current archaeological theories – but what is the big deal if this was true.  Why not accept the evidence and go forward with these more practical metal tools?

Copper Axes also available at the time of these monuments’ construction - Dating the Monument (Stonehenge)
Copper axes were also available at the time of these monuments’ construction – Dating the Monument (Stonehenge)

Well, this is when archaeology digs itself into a giant theoretical hole, as metals (such as Bronze) were supposedly not invented until AFTER 2500 BCE in Britain (hence the Victorian term of the ‘Bronze Age’ – 2500BCE to 70 BCE), 800 years before the supposed build date of Stonehenge. 

However, we now know that bronze and copper axes were available elsewhere in Central Europe and the Mediterranean thousands of years earlier.  And it is pretty feasible that these tools were available, as we now believe we have been trading with Europe since the Mesolithic period.  We have found boat yards (at the bottom of the Solent) that travelled to Anatolia for grain in the 6th Millennium BCE.

Central Mesolithic European Grave with Bronze Axes 5000 BCE - Dating the Monument (Stonehenge)
Central Mesolithic European Grave with Bronze Axes 5000 BCE – Dating the Monument (Stonehenge)

Stonehenge Phase 1 Dating

The traditional story of Stonehenge places its construction firmly in the Neolithic period, beginning around 3000 BC and reaching its famous stone phase around 2500 BC. However, The Stonehenge Code argues that a growing body of radiocarbon evidence points to a much earlier origin, suggesting that the monument’s first phase dates back to the Mesolithic period, around 8300 BC.

The foundation of this argument rests on several independent lines of evidence.

The first comes from the famous Mesolithic postholes discovered near Stonehenge’s old visitor car park. Excavated in 1966, these large postholes initially appeared to belong to the Neolithic period. However, later analysis of pine charcoal recovered from them yielded radiocarbon dates ranging from approximately 8860 to 6590 BC. Since pine was believed to have disappeared from the local landscape long before the conventional date of Stonehenge’s construction, these results posed a major chronological problem. Rather than redefining Stonehenge’s origins, the postholes were interpreted as unrelated Mesolithic structures.

Dating the Monument (Stonehenge)
Stonehenge Car Park Post Hole – Dating the Monument (Stonehenge)

Additional evidence emerged in 1988–89 when another Mesolithic posthole was discovered by Wessex Archaeology. This feature produced a date between 7737 and 7454 BC and contained a piece of rhyolite, a stone type linked to the Welsh bluestones later found at Stonehenge.

Perhaps the most significant evidence comes from Stonehenge itself. Excavations by Tim Darvill and Geoffrey Wainwright recovered charcoal from the socket of Stone 10. This sample produced a radiocarbon date between 7330 and 7060 BC, placing activity directly associated with a stone setting thousands of years earlier than the accepted chronology. According to the hypothesis, this is not evidence of isolated activity but part of a much larger Mesolithic phase of construction.

Dating the Monument (Stonehenge)
Stonehole 10 -Dating the Monument (Stonehenge)

The argument is strengthened by evidence from the Welsh bluestone quarries at Craig Rhos-y-Felin and Carn Goedog. Excavations at these sites revealed numerous Mesolithic hearths and occupation layers dating between approximately 8550 and 6840 BC. These dates overlap closely with the Stonehenge posthole dates. Rather than indicating casual occupation, the hypothesis proposes that these communities were actively quarrying and transporting stones during the Mesolithic period.

To test whether these overlaps were coincidental, the blog applies a statistical model to compare radiocarbon dates from Stonehenge with those from the quarry sites. Five Stonehenge samples and twenty-seven quarry samples were analysed. The results suggest an extraordinarily small probability that the overlaps occurred by chance, leading to the conclusion that the Stonehenge activity and quarry activity belong to the same broad Mesolithic horizon.

Dating the Monument (Stonehenge)
Quarry Hearths in Red – Dating the Monument (Stonehenge)

Based on this evidence, the proposed date for Stonehenge Phase I is approximately 8300 BC. This date is derived from the earliest cluster of overlapping radiocarbon dates found at Stonehenge and the Welsh quarry sites, particularly those centred around 8550–8000 BC. The argument is that these dates mark the initial establishment of a bluestone monument linked to a Mesolithic river-based transport network, rather than to a later Neolithic farming society.

If correct, this interpretation would fundamentally change our understanding of Stonehenge. Instead of being a product of early agriculture, it would become a monument originating in the Mesolithic world of hunter-gatherers. Such a revision would push the monument’s origins back by roughly five thousand years and require a complete reassessment of the chronology of prehistoric Britain.

Dating the Monument (Stonehenge)
Stonehenge Phase 1 – Dating the Monument (Stonehenge)

Stonehenge Phase 2 Dating

The date of Stonehenge Phase II is one of the most important questions in British prehistory. Conventional archaeology places the construction of the major stone monument around 2500 BCE, based largely on artefacts and antler picks associated with later phases of activity. However, when the evidence directly associated with the monument’s geometry and construction is examined, a significantly earlier date emerges. Two independent lines of evidence point towards a construction date around 4200 BCE: the radiocarbon evidence from Stone 27 and the astronomical alignment of the Avenue.

Evidence 1: Stone 27

One of the strongest chronological indicators comes from Stone 27 itself. During excavation, material (3547) sealed within the stone socket produced a radiocarbon date of approximately 4342–4039 BCE, with a central value around 4191 BCE. Unlike many dates recovered from secondary deposits, this material was associated directly with the stone-setting process.

Dating the Monument (Stonehenge)
Stone 27 with packing and C14 sample – 3547 – Dating the Monument (Stonehenge)

This distinction is critical. Archaeological dates are only as useful as their context. Dates from occupation layers, later disturbances, or residual material may indicate when people were present at a site, but they do not necessarily date the monument itself. In contrast, material sealed within a stone socket is directly related to the stone’s erection.

The conventional explanation is that the dated material was residual and happened to be incorporated into the socket during construction many centuries later. While this remains possible, it introduces an additional assumption. The simpler explanation is that the material relates to the activity that created the socket itself.

If accepted, Stone 27 provides direct evidence that major stone-setting activity was occurring around 4200 BCE, more than a millennium earlier than the traditional chronology suggests.

Evidence 2: The Avenue Alignment

The second line of evidence comes from the Stonehenge Avenue. Unlike the circular arrangement of the earlier monument, the Avenue establishes a clear directional axis towards the midsummer sunrise.

This alignment is important because the position of the solstice sunrise is not fixed through time. Changes in the Earth’s axial tilt gradually alter the azimuth of the rising sun. As a result, an accurately aligned monument can potentially provide chronological information.

When the measured alignment of the Avenue is compared with reconstructed positions of the midsummer sunrise through time, the closest correspondence occurs around 4180 BCE. The significance of this result lies not merely in the alignment itself but in the date it produces.

Solar alignments are common throughout archaeology. What matters here is that the alignment generates a date that closely matches the radiocarbon evidence from Stone 27.

Dating the Monument (Stonehenge)
Dating the Monument (Stonehenge)

Independent Convergence

Either line of evidence could be challenged in isolation.

Critics may argue that the Stone 27 date represents residual material rather than construction activity. Equally, they may question whether an earthwork alignment can provide sufficient precision for dating purposes.

However, the strength of the argument lies in the convergence of the two methods.

Radiocarbon dating and astronomical reconstruction are entirely independent techniques. One relies upon radioactive decay; the other relies upon celestial mechanics. Yet both point towards virtually the same period, approximately 4200 BCE.

This agreement is difficult to dismiss as a coincidence. Rather than relying on a single sample or a single interpretation, the proposed date emerges from two distinct lines of evidence that reach the same conclusion.

A New Chronology

If Stonehenge Phase II dates to around 4200 BCE, the implications are profound. The monument would predate the conventional chronology by more than 1,500 years and belong to a period when Britain was still emerging from the final stages of post-glacial flooding.

Within this framework, the construction of the great stone monument represents not the beginning of Stonehenge but its transformation. The earlier Phase I monument was already in place. Phase II marked its redesign into a permanent stone memorial, preserving the memory of a changing landscape and a disappearing world.

The combined evidence from Stone 27 and the Avenue therefore places the most likely date for Stonehenge Phase II at approximately 4200 BCE, providing a chronology supported by both radiocarbon science and astronomical alignment.

Unearth the Astonishing Secrets of Stonehenge (The Stonehenge Hoax)

Introduction

Video

Synopsys

Stonehenge, a timeless enigma etched in stone and earth, has stood as a formidable puzzle challenging the intellects of archaeologists and historians alike. Despite the myriad attempts, including books, TV programs, and academic conferences, the secrets of these ancient stones and their encircling ditches have proven elusive. Against this backdrop, we scrutinise the existing thirteen hypotheses, each presenting its narrative but collectively lacking a coherent thread.

In adopting the deductive reasoning akin to Sherlock Holmes, we endeavour to weave these disparate threads into a unified tapestry that not only unravels the mystery of Stonehenge but also shakes the foundations of established academic narratives. This intellectual journey may induce some discomfort as we challenge conventional perceptions and invite a reevaluation of our understanding of the past. Apologies are extended in advance for any cognitive dissonance, but the pursuit of truth and reason mandates an unfiltered presentation of the facts.

So, fasten your seatbelts for an expedition into the archaeological unknown.

As we navigate this intellectual rollercoaster, be prepared for a revelation that might reshape our understanding of Stonehenge and question the foundations of our historical narratives. The dawn of a new archaeological era awaits promising insights that could leave even the most curious minds astonished. As we delve into this intellectual rabbit hole, be ready for a revelation that could astonish Alice.

Robert John Langdon (2023) – (The Stonehenge Hoax)

The Journey

Langdon’s journey was marked by meticulous mapping and years of research, culminating in a hypothesis that would reshape our understanding of prehistoric Britain. He proposed that much of the British Isles had once been submerged in the aftermath of the last ice age, with these ancient sites strategically positioned along the ancient shorelines. His groundbreaking maps offered a fresh perspective, suggesting that Avebury had functioned as a bustling trading hub for our ancient ancestors. This audacious theory challenged the prevailing notion that prehistoric societies were isolated and disconnected, instead highlighting their sophistication in trade and commerce.

In the realm of historical discovery, the audacious thinkers, the mavericks who dare to question established narratives, propel our understanding forward. Robert John Langdon is undeniably one of these thinkers. With a deep passion for history and an unyielding commitment to his research, he has unearthed a hidden chapter in the story of Avebury that transcends time and offers fresh insights into our shared human history.

As Langdon’s trilogy, ‘The Stonehenge Enigma,’ continues to explore these groundbreaking theories, it beckons us to embark on a journey of discovery, to challenge our assumptions, and to embrace the possibility that the past is far more complex and interconnected than we ever imagined. With its ancient stones and enigmatic avenues, Avebury continues to whisper its secrets to those who dare to listen, inviting us to see history through a new lens—one illuminated by the audacious vision of Robert John Langdon.

(The Stonehenge Hoax – Periglacial Stripes)

The Book

The Stonehenge Hoax
The Great Stonehenge Hoax

Author’s Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and excerpts from the acclaimed Robert John Langdon Trilogy, a series of books that explore Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post-Glacial Flooding Hypothesis, which offer compelling evidence of ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

Other Blogs

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The Stonehenge Hoax – The Ditch

Introduction

When is a ditch not really a ditch? …………………………………

The Problem

The Stonehenge ditch is something the archaeologists don’t frequently (if at all) discuss or publicise as it is not a ditch as we commonly know it, which has baffled them since its first excavation.  The fact that this Ditch is ‘unique’ in the world, which you would imagine would be promoted as such, but they prefer to hide their lack of understanding of this feature and say nothing, for the Stonehenge Ditch is not a ditch but a series of pits with walls, seats and stone holes in the base that goes against the current theories about the site.

The Solution

If groundwater was contemporary in the past, then some evidence should still be present.  Consequently, one of the more fascinating facts found when studying any prehistoric site is that the constructors spent disproportionate time digging ditches to surround their monuments, whether around henges or barrows.

This practice would be considered strange, even if the prehistoric builders had practical, modern, labour-saving tools. But unfortunately, our ancestors only benefited from stone tools, bones, and antlers, making such excavation exceptionally slow, cumbersome, and even more bewildering. 

Looking at Avebury (a henge monument) as an example, the most conservative archaeological estimation suggests that the ditches surrounding Avebury would have taken 1.5 million working hours to build.  That’s equivalent to 100 people working 12 hours daily, every day, for 3.5 years.  On the other hand, making a wooden palisade using the same tools would have taken less than one month, merely 2% of the time and exhaustion.

Current archaeological theories surrounding these ditches maintain that they were used either as a defensive fortification and/or a landscape feature to keep animals in/out, or, more recently, as a ‘ceremonial’ feature to ward off evil spirits.

This shows the levels of desperation the archaeologists have descended into in recent years in an abortive attempt to understand basic structures, such as a moat. Moreover, these quaint ideas strike me as somewhat flawed, as a ditch is significantly less effective than a palisade (a long line of sharpened wooden stakes planted into the ground), which would have been considerably more straightforward, quicker to construct and more effective.  As for evil spirits, would not a tiny 6-inch channel achieve the same symbolic purpose as a huge five-metre ditch? (The Stonehenge Hoax – The Ditch)

Lt-Col Willaim Hawley and team 1920s -The Stonehenge Ditch
Lt-Col Willaim Hawley and team 1920s – (The Stonehenge Hoax – The Ditch)

Lt-Col William Hawley was one of the amateur archaeologists employed by the Ministry of Works to undertake excavations at our famous monuments, Stonehenge and Avebury, in the 1920s.  But unfortunately, he was not the most ‘careful’ of archaeologists.  This was a view shared by colleagues such as Atkinson in his book, ‘Stonehenge’, 3rd edition, London 1979, where he suggests that Hawley’s methods were somewhat ‘inadequate’.

Despite this accusation of carelessness, he could still find some strange features, which can be seen as evidence of a moat.  For example, below a layer of chalk rubble infill (chalk which would have fallen naturally into the Moat when it was disused) under a layer of flint, he discovered ‘foot-trampled mud’ (Cleal et al., 1995,p.68) – found in an area of chalkland which has no natural mud/clay, with an associated ‘layer of struck flint’ – which he found in many segments.

Now, this sounds quite interesting, if not conclusive as evidence of the existence of a moat, until you look for other landscape features with similar foundations, which, when analysed, start to build up a much more conclusive picture.   Such landscape features can be found in ‘dew ponds’. (The Stonehenge Hoax – The Ditch)

Typical Dew Pond as found in Wiltshire - The Stonehenge Ditch
Typical Dew Pond as found in Wiltshire – (The Stonehenge Hoax – The Ditch)

 

A dew pond is an artificial pond usually sited on the top of a hill, intended for watering livestock.  Dew ponds are used in areas where a natural supply of surface water may not be readily available.  The name dew pond (sometimes cloud pond or mist pond) was first found in the Journal of the Royal Agricultural Society in 1865.  Despite the name, their primary source of water is believed to be rainfall rather than dew or mist.

The mystery of dew ponds has drawn the interest of many historians and scientists, but until recent times, there has been little agreement on their early origins.  It was widely believed that the technique for building dew ponds had been understood from the earliest times, as Kipling tells us in Puck of Pook’s Hill.  The two Chanctonbury Hill dew ponds were dated to the Neolithic period by nearby flint tools and by their similarity to other dated earthworks.

Profile of a typical dew pound construction - The Stonehenge Ditch

Profile of a typical dew pound construction – (The Stonehenge Hoax – The Ditch)

They are usually shallow, saucer-shaped, lined with puddled clay, chalk or marl on an insulating straw layer over a bottom layer of chalk or lime.  To deter earthworms from their natural tendency to burrow upwards, which would, in a short while, make the clay lining porous, a layer of soot would be incorporated or lime mixed with the clay.  The clay is usually covered with straw to prevent cracking by the Sun, and a final layer of chalk rubble or broken stone to protect the lining from the hoofs of sheep or cattle.

In 1877, Mr H. P. Slade discarded the term ” dew-ponds ” in favour of ” artificial rain-ponds” and scouted the idea that dew had any part in filling ponds.  His remarks dealt practically with one pond, the greatest diameter of which was 69½ feet, which was constructed in 1836 at the cost of £40.  It was bedded in the Thorpe Downs, near Loughborough, on the Berkshire Hills, at a height of 450 feet above the sea level.  Being “fed from the heavens,” this probably gave rise to its being classed as a dew-pond.  The base of this pond was a layer of thick clay (mixed with lime to prevent the working of earthworms, a coating of straw “to prevent the Sun cracking the clay,” and, thirdly, a layer of loose rubble.  Moreover, for 40 years, until 1876, the pond had been dry only once.

Nonetheless, Hawley can be forgiven for not recognising that this clay lining feature was being used to stop the water from being absorbed through the porous chalk back into the bedrock, as he was not looking for a moat, as he was ‘reliably’ informed by his geologists, that the surrounding area, (Stonehenge Bottom) has been dry for over half a million years and therefore did not have a raised water table in the past.

Hawley also found evidence of what he called a strange ‘dark soil layer’ which existed within the primary fill; in many parts of the ditch, I would strongly suggest that this ‘dark soil layer’ consisted of decayed remains and sediment, possibly the hay which is traditionally lined with the clay to stop cracking.  Moreover, organic matter would have naturally settled to the bottom (as in a pond) over time, especially if it had not been cleaned regularly.  This would naturally have left a lining of dark soil at the bottom of the moat, if it fell into disuse and became dry

By 1923, Hawley reported that this ‘ubiquitous dark layer’ was found throughout his excavations, sometimes up to 8″ thick, suggesting its existence in water would have been for some considerable length of time, and it was resting directly at the bottom of the moated ditch.  This ‘Dark Layer’ was also observed by Atkinson in 1954 when they recut a piece of Hawley’s trench (segment 98) and found the same dark layer – not flint this time, but a stone layer.  Moreover, he described the soils above as loamy (sand and clay) (Evans et al., 1984, 7-30) and that this layer (like the construction of dew ponds) was “often associated with a ‘layer’ of struck flint, which was found in many segments” (Cleal et al., 1995, p.68), to protect the clay lining. (The Stonehenge Hoax – The Ditch)

Hawley’s Ditch excavation and the ‘dark matter’ – (The Stonehenge Hoax – The Ditch)

It has now been established that Stonehenge had, at some stage, a layer of waterproofing, the ‘layer of foot-trampled mud’ plus a ‘layer of struck flint’ added to the ditch.  It’s also been established that this ditch was, at some point, filled with water for quite some considerable amount of time, as evidenced by the deep ‘dark layer’ sediment.

The Ditch is really a series of Pits

 (The Stonehenge Hoax - The Ditch)
(The Stonehenge Hoax – The Ditch)

It is commonly agreed amongst both geologists and archaeologists that ‘dew ponds’ could be used in areas without natural springs for drinking water, so why didn’t our ancestors build a “dew pond”– why go through the enormous and challenging task of building a 100-foot ring ditch full of freshwater pits?

Moreover, from the archaeological evidence, I would suggest that the active moat from the start of the Phase 1 period at Stonehenge (when the water table was at its highest) and the river Avon was 30m higher than today, changed as the river levels dropped in the Neolithic Period, so did consequently, the height of the Moat.   Therefore, this civilisation decided to line the moat with clay and flint to keep the waters high and preserve its use, but eventually it became impossible to maintain it. Phase 2 of the site, involving the introduction of the massive sarsen stones and the construction of the avenue, marked the beginning of the site’s adaptation and its purpose.

However, the mystery of this ring ditch/moat deepens when you look at the other ditches in the prehistoric world, which show that the ditch is not a single cut, but a series of individual pits interlinking to each other, with walls and seats cut into the chalk, which is not seen anywhere in the prehistoric world.

Hawley’s finding of other moats that surrounded the north and south mounds, which ‘connected’ to the Stonehenge moated ditch, escalated this use of the ditch as a moat. 

On the shallow associated banks of the ditches, he finds lots of what he calls ‘yellow marl’ – “there was a quantity of the yellowish marl within the ditch and about the site of the palisade” (Cleal et al., 1995, p.278) – Marl was originally an old term loosely applied to a variety of materials, most of which occur as loose, earthy deposits consisting chiefly of an intimate mixture of clay and calcium carbonate, formed under freshwater conditions; specifically an earthy substance containing 35–65% clay and 65–35% carbonate.  (Pettijohn, F. J. (1957). p.410)

 (The Stonehenge Hoax - The Ditch)
Southern Mound Moat – (The Stonehenge Hoax – The Ditch)

As this marl contained fragments of Blue and Sarsen stones, this clearly shows that ‘freshwater’ was in the moat and present at the time of construction.

If you look at the remains of the Stonehenge moat today, it appears very shallow and uneven, but when excavated, it looks very different.  It is, in fact, a series of ‘individual pits’, which, in places, are connected by shallow walls.

This opens up a series of fascinating unanswered questions:

  • Was the ditch half-finished, for the pits differ in size, shape and depth, or perhaps they were ‘dodgy Welsh builders’ who did not know what they were doing?
  • If the ditch is defensive or symbolic, as some archaeologists suggest, why not pile the chalk on one side rather than both sides?
  • Why are their seats or shelves left in the ditch?
  • Why are there stone holes at the bottom of the moated ditch?

The ability to build defensive structures was available to our ancestors.  Still, they decided not to use it on this occasion, as clearly it was made for another purpose, and that purpose was as a groundwater-filled moat. 

The only reason you would cut the ditch down to different levels is to search for the groundwater level under the chalk bedrock.   As chalk is a porous substance and water travels freely through it, the groundwater table over an area like Stonehenge can vary by a metre or so depending on the makeup of the chalk, as water runs through the fault lines in the chalk strata, leading to varying groundwater levels over an area.

This variation in groundwater tables would also explain why the builders left shallow walls and why none of the walls reached the surface, so water could flow between the individual pits.

Why did the builders then choose the Stonehenge area to build a site?

CHALK

Our ancestors needed a place with chalk subsoil because it has two exceptional properties – its porosity and its resistance to dissolution in water.

The problem with chalk is that it’s difficult to excavate, almost impossible.  So, if Mesolithic Man wanted an easy time and needed a large defensive ditch, he would have chosen a site with soft soil, unless he was insane or had nothing better to do for the next few years!

These builders were attracted to chalk and its unique characteristics.  Not only is it porous, but it is SLOW porous, which means that a pit or hole below the local groundwater table would gradually fill with or empty with water at a consistent rate.  In addition, because it’s part of the limestone family, it would not crumble and dissolve.

(The Stonehenge Hoax – The Ditch)

If these moats are used in conjunction with natural groundwater reeds (Phragmites australis is one of the main wetland plant species used for phytoremediation water treatment) and placed on the shelves within the ditch, the result is pure, clean freshwater good enough to drink, comparable to modern tap water.  This type of water purification would not be seen in Britain for another 8,000 years.  It would also leave Hawley’s unidentified ‘dark layer’.

Ground Water

Groundwater tables were much higher than they are today due to meltwater from the last ice age, which raised them.  For a site like Stonehenge, this would mean the monument would have been surrounded by groundwater on three sides, as the springs at the bottom of Stonehenge would have leaked thousands of litres of water per second over thousands of years.

Recent geological studies have recognised the multitude of Springs and groundwater in this area “Geology has a great influence on landscape, including the shape of the ground, vegetation and groundwater in terms of potential springs and water sources….. Stonehenge is located on a plateau area with groundwater draining east towards the River Avon and south towards and beneath dry valleys, including Stonehenge Bottom (Fig. 28). Water supply would have been plentiful… Having discovered this new geology in the Chalk at Stonehenge, further studies are required to assess its implications for landscape evolution and habitation.” Rory N. Mortimore, et. al. Stonehenge—a unique Late Cretaceous phosphatic Chalk geology: implications for sea-level, climate and tectonics and impact on engineering and archaeology, Proceedings of the Geologists’ Association, Volume 128, Issue 4, 2017

So much groundwater was found that the paper pointed out that: “Cancellation of the original proposed A303 Stonehenge Tunnels and the Amesbury to Winterbourne Stoke improvements was in large part due to the unexpected geology and unexpected groundwater conditions around Stonehenge, which led to construction costs more than doubling to £470 million in July 2005.

Stonehenge Bottom Springs – (The Stonehenge Hoax – The Ditch)

A303 Stonehenge tunnel area conceptual groundwater flow regime. Stonehenge Bottom acts as a drain to the area, with a spring located downstream at Spring Bottom. A farm and a seasonal pond in Lake Bottom close to the River Avon. During the rapid rise in groundwater levels in 2002, the floor of Stonehenge became flooded up to the A303 crossing and Trial Pits on the west side, partly filled with water

This high groundwater would permeate into any pits or ditches dug below the water table, and this water would be FILTERED by the chalk; as recent findings at Blick Mead have found, the water temperature is fixed at a constant 50F throughout the seasons, even in the coldest winters, where the water would steam in the colder atmosphere.  Therefore, the ditches surrounding Stonehenge were deliberately cut by our ancestors below the groundwater table to allow them to fill with warm, filtered, clean drinkable water.

It is commonly agreed amongst both geologists and archaeologists that ‘dew ponds’ could be used in areas without natural springs for drinking water, so why didn’t our ancestors build a “dew pond”– why go through the enormous and challenging task of building a 100-foot ring ditch full of freshwater pits?

Moreover, from the archaeological evidence, I would suggest that the active moat from the start of the Phase 1 period at Stonehenge (when the water table was at its highest) and the river Avon was 30m higher than today, changed as the river levels dropped in the Neolithic Period, so did consequently, the height of the moat.   Therefore, this civilisation decided to line the moat with clay and flint to keep the waters high and preserve its use until, eventually, it was impossible to protect, and at this point, Phase 2 of the site involved the introduction of the massive sarsen stones and construction of the Avenue, as they adapted the site for a new purpose.

However, the mystery of this ring ditch/moat deepens when you look at the other ditches in the prehistoric world, which show that the ditch is not a single cut, but a series of individual pits interlinking to each other, with walls and seats cut into the chalk, which is not seen anywhere in the prehistoric world.

Wiltshire Aquifer system – (The Stonehenge Hoax – The Ditch)

Unearth the Astonishing Secrets of Stonehenge (The Stonehenge Hoax)

Introduction

Video

The Book

The Stonehenge Hoax
The Great Stonehenge Hoax – (The Stonehenge Hoax – The Stonehenge Layer)

Synopsys

Stonehenge, a timeless enigma etched in stone and earth, has stood as a formidable puzzle challenging the intellects of archaeologists and historians alike. Despite the myriad attempts, including books, TV programs, and academic conferences, the secrets of these ancient stones and their encircling ditches have proven elusive. Against this backdrop, we scrutinise the existing thirteen hypotheses, each presenting its narrative but collectively lacking a coherent thread.

In adopting the deductive reasoning akin to Sherlock Holmes, we endeavour to weave these disparate threads into a unified tapestry that not only unravels the mystery of Stonehenge but also shakes the foundations of established academic narratives. This intellectual journey may induce some discomfort as we challenge conventional perceptions and invite a reevaluation of our understanding of the past. Apologies are extended in advance for any cognitive dissonance, but the pursuit of truth and reason mandates an unfiltered presentation of the facts.

So, fasten your seatbelts for an expedition into the archaeological unknown.

As we navigate this intellectual rollercoaster, be prepared for a revelation that might reshape our understanding of Stonehenge and question the foundations of our historical narratives. The dawn of a new archaeological era awaits promising insights that could leave even the most curious minds astonished. As we delve into this intellectual rabbit hole, be ready for a revelation that could astonish Alice.

Robert John Langdon (2023) – (The Stonehenge Hoax)

Author’s Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and excerpts from the acclaimed Robert John Langdon Trilogy, a series of books that explore Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post-Glacial Flooding Hypothesis, which offer compelling evidence of ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

Other Blogs

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The Stonehenge Hoax – The Stonehenge Layer

Extract from the book…………………… The Great Stonehenge Hoax – Conundrum 8 (The Stonehenge Layer)

Chips are Us”

The Problem

During the limited excavations at Stonehenge undertaken in the early part of the last century, archaeologists were amazed by the number and distribution of the bluestones scattered across the site and lying within the soil. The number of stones was so great that the archaeologists called it the ‘Stonehenge layer.’ Chippings from the faces of the stones (particularly the larger Sarsen stones) would be expected, but the greater number of chippings came from the smaller, less frequent Bluestones, which has baffled the experts even today.

The Solution

Timothy Darvill, Professor of Archaeology at Bournemouth University, has revealed research that he believes shows that Stonehenge was an ancient healing place.  In his book, ‘Stonehenge: The Biography of a Landscape’, the Professor cites that human remains excavated from burial mounds near Stonehenge reveal that many of the buried had been ill before their death.

Darvill also suggests that these remains are not those of local people but of people who had come and travelled from far and wide.  For example, the Amesbury Archer, the name given to one of the identified remains, originated in what is now Switzerland.  The Professor believes that Stonehenge would have been predominantly used during the winter solstice when our ancestors believed it was occupied by Apollo, the Greek and Roman God of healing. (The Stonehenge Hoax – The Stonehenge Layer)

However, I would suggest that it was not the gods alone at Stonehenge that encouraged people from across the known world to travel such vast distances.  Another feature of Stonehenge that still survives today is the legendary Bluestone.

 (The Stonehenge Hoax - The Stonehenge Layer)
Darvill 2008 – (The Stonehenge Hoax – The Stonehenge Layer)

Bluestones are unexceptional, igneous rocks, such as Dolerite and Rhyolite.  They are so-called because they take on a bluish hue when ‘WET’.  Over the centuries, legends have endowed these stones with mystical properties.

The British poet Layamon, inspired by the folklore accounts of 12th-century cleric Geoffrey of Monmouth, wrote in 1215:

The stones are great

And magic power they have

Men that are sick

Fare to that stone

And they wash that stone

And with that water bathe away their sickness

This ancient poem clearly shows that the sick would BATHE away their illnesses.  I find it surprising that Professor Darvill never linked this revealing poem to his hypothesis.  Recently, findings by Professor Mike Parker Pearson of Sheffield University have revealed a smaller version of Stonehenge, confirming the link between Bluestones and WATER. (The Stonehenge Hoax – The Stonehenge Layer)

The BBC reported that:

About a mile away from Stonehenge, at the end of the ‘Avenue’ that connects it to the River Avon, archaeologists have discovered a smaller prehistoric site, named – appropriately, after the colour of the 27 Welsh stones it was made of – ‘Bluehenge’.  The newly discovered stone circle is thought to have been put up 5,000 years ago – which is around the same time work on Stonehenge began – and appears to be a miniature version of it.’

Bluehenge moved to the edge of the river Avon - The Stonehenge Layer
Bluehenge moved to the edge of the River Avon – The Stonehenge Layer

Hawley discovered that another exciting aspect of the moat at Stonehenge was the number of ‘craters’ found at the bottom of the ditch.  These craters were large enough to have accommodated quite large Bluestones.   Hawley, in one particular part of the Moat, found a two-metre wide hole which he described as a post hole – this, however, is too big for a post, but it could easily have been a stone hole as its size and shape were similar to the remaining standing Bluestones we see today in front of the Sarsen Stone circle.

It should be remembered that Bluestones aren’t the same size as the Sarsen Stones; they’re much smaller, and an average visitor to the Stonehenge monument may quite quickly scan them without really noticing their presence.  Archaeologists currently believe that their small size is due to damage from souvenir hunters over the years. 

But I propose that they may not have been small when originally brought to Stonehenge, for they have little to no building quality, serving instead as a healing agent to be placed at the edge and in the Moat to initiate their medical remedy.  As an indication of how these stones were initially used, archaeologists have identified a colossal amount of Bluestone chippings covering the entire site at Stonehenge, 3,600 in fact, so many that they call the soil surrounding which contains these shards ‘The Stonehenge Layer’.

 (The Stonehenge Hoax - The Stonehenge Layer)
Stonehenge Layer – (The Stonehenge Hoax – The Stonehenge Layer)

I would suggest that just as we enjoy adding a variety of salts to our baths today, so did the Mesolithic people – they would have added a small amount of Bluestone chippings into the moat as they bathed.  Their healing qualities would have been enhanced by chipping the Bluestones and revealing the inner core.

The traditional view of why these quantities of Bluestone chippings are abundant is that they were ‘worked’ upon and reshaped to fit the holes that had already been prepared.  This seems completely illogical – why would anyone in their right mind undertake the gruelling task of working on this burdensome stone to fit into the holes when it would have been so much easier to have dug the chalk soil first to accommodate the shape of the stones?  Another traditional view is that the many chippings found were remnants from ‘dressing’ by reshaping these Bluestones. 

We know that the more massive Sarsen Stones were dressed on the inner side of the stone circle, as the flake marks are still visible, but there is no evidence to date that the bluestones were also dressed.

Given that archaeologists believe that the Bluestone chips exist only because of the re-working by our ancestors or the results of Victorian souvenir hunters, it would be interesting to compare their number (3,675) to the number of chippings discovered from the softer, easier-to-break, more famous and more plentiful Sarsen Stones, which we know were re-worked. (The Stonehenge Hoax – The Stonehenge Layer)

Stonehenge Layer showing disproportionate number of chippings - The Stonehenge Layer
Stonehenge Layer showing disproportionate number of chippings – The Stonehenge Layer

You would think, proportionately (251 cubic metres of Sarsen Stones v 28 metric metres of Bluestones), there would be a lot more Sarsen stone chipping to Bluestones – but you would be wrong!!  Only 2,173 Sarsen Stone pieces have been found, despite there being over nine times as many Sarsen Stones as Bluestones.

So, assuming there would have been a similar level of interest in Blue and Sarsen Stones by souvenir hunters and an equal amount of reworking of the stones by our ancestors, you would expect to find at least 30,000 Sarsen Stone fragments, but only a paltry 2,173 have been discovered.  Or, if 2,173 Sarsen stone pieces were the norm for both re-working and souvenir hunters, they should have found only 240 bluestone fragments and not the 3,675 (Cleal et al.,1995, pp. 379 – 387).

I can, therefore, very confidently conclude that the Bluestones were deliberately broken up to be used in the moat.  Our ancestors likely believed that once the outer covering of the Bluestones had been thoroughly exhausted, their beneficial properties would diminish, and so they were abandoned.

This is confirmed by Tim Darvill and Geoffrey Wainwright, who stated, “Our excavations within Stonehenge in 2008 confirmed what earlier excavations had hinted at: namely that the Bluestones started to be broken up and chipped away more or less from the time they were set up in each successive arrangement.”

The concept of a prehistoric person bathing away his ills may seem absurd to some, but throughout history, humanity has been attracted to this type of treatment.  For example, during the Roman Empire, some 2,000 years ago, it became commonplace in Britain for every large villa to have a spa.  (The Stonehenge Hoax – The Stonehenge Layer)

Therefore, is it a giant leap to imagine that the origin of such activities could have been introduced at an early period?

When the moat at Stonehenge had eventually dried up in the Bronze Age and could no longer be used as a spa, these smaller Bluestones were abandoned and scattered throughout the site.  The larger Bluestones at the bottom of the dried moat were probably moved to the stone circle, explaining the considerable variation in the shapes and sizes of the stones we see at the Stonehenge monument today. (The Stonehenge Hoax – The Stonehenge Layer)

AI Update (2026)

The Stonehenge Layer Reveals a Remarkable Anomaly

Darvill’s analysis of the Stonehenge Layer provides one of the most important clues yet discovered regarding the treatment of the Bluestones at Stonehenge.

The fragment assemblage is composed approximately of:

  • Sarsen: 48%
  • Rhyolite: 16%
  • Subplanar Rhyolite: 22%
  • Spotted Dolerite: 12%
  • Palaeozoic Sandstone: 1%
  • Mesozoic Sandstone: 1%

Collectively, the Bluestones account for approximately 52% of all identified fragments, while Sarsens account for 48%.

At first glance, this appears unremarkable.

However, when the size of the stones is taken into account, a major problem emerges.

The Sarsens Were Vastly Larger

Stonehenge originally contained approximately:

  • 80 Sarsens
  • 70–80 Bluestones

At first glance, this appears to be a balanced arrangement.

But the stones themselves were anything but equal.

A typical Bluestone weighs approximately 2–4 tonnes.

A typical Sarsen weighs approximately 20–25 tonnes, with some considerably larger.

In other words, the average Sarsen contains roughly six to ten times more stone than the average Bluestone.

If both groups had simply been shaped and dressed during construction, the Stonehenge Layer should be dominated by Sarsen waste.

After all, there was vastly more Sarsen material available to chip away.

Yet this is not what Darvill found.

Instead, Bluestone fragments occur in almost exactly the same proportion as Sarsen fragments.

Why Is This Important?

The accepted interpretation is that the Sarsens were dressed into shape, naturally producing flakes and chips during construction.

The Bluestones present a different problem.

If they had simply been shaped like the Sarsens, their fragment representation should be far lower because there was far less stone available to work.

Instead, they produce almost the same number of fragments.

The simplest explanation is that the Bluestones were not merely dressed.

They were deliberately broken up.

This conclusion aligns closely with Darvill’s observation that many of the Bluestone fragments appear to derive from activity that occurred almost immediately after the stones arrived at Stonehenge.


Estimating the Original Bluestone Composition

Using Darvill’s fragment proportions, the Bluestone assemblage can be divided approximately as follows:

  • Subplanar Rhyolite: 42%
  • Rhyolite: 31%
  • Spotted Dolerite: 23%
  • Palaeozoic Sandstone: 2%
  • Mesozoic Sandstone: 2%

Assuming an original total of approximately 80 Bluestones, this suggests:

Stone TypeEstimated Number
Subplanar Rhyolite~34
Rhyolite~25
Spotted Dolerite~18
Palaeozoic Sandstone1–2
Mesozoic Sandstone1–2

The pattern is immediately apparent.

Most of the Bluestones appear to have been rhyolitic in origin, with Spotted Dolerite forming a substantial minority and only a small number of sandstone blocks present.


Quarry Evidence and Stone-Type Match

The estimated stone distribution aligns remarkably well with the known quarry evidence from Wales.

Confirmed Quarry SiteStone Type(s)Approximate Number of Original Stones
Carn Goedog, Preseli HillsSpotted Dolerite~20–30 stones
Craig Rhos-y-felin, Preseli HillsRhyolite and Subplanar Rhyolite~30–40 stones

This correspondence is important.

The Stonehenge Layer does not produce a random assortment of rock types.

Instead, the fragment evidence is dominated by exactly the lithologies identified at the known Bluestone quarry sites.

The debris, therefore, appears to preserve a genuine signature of the imported stones rather than representing later contamination or accidental breakage.


The Quarry Dating Problem

The quarry evidence presents another puzzle rarely discussed within traditional archaeology.

Radiocarbon dates from the Preseli quarry sites indicate activity extending from approximately the 9th millennium BCE through to the 5th millennium BCE.

In other words, the Bluestones appear to have been extracted and transported for thousands of years.

Then something changed.

By the late Mesolithic, quarry activity appears to decline dramatically, creating a gap of roughly a thousand years before the traditionally accepted construction dates for Stonehenge.

This creates an awkward question.

If the Bluestones were primarily intended as standing stones for the famous monument we see today, why were they being quarried and transported thousands of years before Stonehenge was supposedly built?

And why does quarry activity appear to cease long before the monument reaches its accepted construction date?

The chronology appears back-to-front.

Under the conventional model:

  1. The stones are quarried.
  2. Quarry activity largely ceases.
  3. A substantial gap follows.
  4. Stonehenge was then constructed.

Yet the Stonehenge Layer indicates extensive Bluestone fragmentation occurring at the monument itself.

The evidence, therefore, appears to describe a long period of Bluestone use followed by decline, rather than a sudden burst of quarrying immediately before construction.


A Different Interpretation

If Bluestones were required for a practical purpose associated with a water-dominated landscape, their importance would naturally decline as water levels fell and river systems stabilised during the late Mesolithic.

Under such a model:

  • Quarrying is intensive while the system is needed.
  • Bluestones are transported and utilised.
  • Water levels gradually fall.
  • Demand for replacement stones declines.
  • Quarry activity eventually ceases.

The quarry chronology, therefore, appears easier to explain as the decline of an existing system than as preparation for a monument supposedly constructed many centuries or even millennia later.

This does not prove the hypothesis.

However, it does raise an important question:

Why does the Bluestone quarry evidence peak during the Mesolithic and then fade away long before the conventional date assigned to Stonehenge?


The Key Observation

The significance of Darvill’s work lies not simply in allowing us to estimate the number and types of Bluestones originally present.

The significance is that the fragment assemblage appears far too rich in Bluestone material relative to the stones’ size.

The Sarsens were enormous.

The Bluestones were comparatively small.

Yet both produced similar quantities of debris.

That should not have happened if both groups were simply being shaped into monuments.

It does happen if one group is being systematically broken into smaller pieces.

The Stonehenge Layer, therefore, appears to preserve evidence that the Bluestones were treated very differently from the Sarsens.

Taken together with the quarry chronology, this suggests that the traditional narrative does not yet fully explain how, when, or why these remarkable stones were transported to Stonehenge in the first place.

Unearth the Astonishing Secrets of Stonehenge (The Stonehenge Hoax)

Video

(The Stonehenge Hoax – The Stonehenge Layer)

The Book

The Stonehenge Hoax
The Great Stonehenge Hoax – (The Stonehenge Hoax – The Stonehenge Layer)

Synopsys

Stonehenge, a timeless enigma etched in stone and earth, has stood as a formidable puzzle challenging the intellects of archaeologists and historians alike. Despite the myriad attempts, including books, TV programs, and academic conferences, the secrets of these ancient stones and their encircling ditches have proven elusive. Against this backdrop, we scrutinise the existing thirteen hypotheses, each presenting its narrative but collectively lacking a coherent thread. (The Stonehenge Hoax – The Stonehenge Layer)

In adopting the deductive reasoning akin to Sherlock Holmes, we endeavour to weave these disparate threads into a unified tapestry that not only unravels the mystery of Stonehenge but also shakes the foundations of established academic narratives. This intellectual journey may induce some discomfort as we challenge conventional perceptions and invite a reevaluation of our understanding of the past. Apologies are extended in advance for any cognitive dissonance, but the pursuit of truth and reason mandates an unfiltered presentation of the facts.

So, fasten your seatbelts for an expedition into the archaeological unknown.

As we navigate this intellectual rollercoaster, be prepared for a revelation that might reshape our understanding of Stonehenge and question the foundations of our historical narratives. The dawn of a new archaeological era awaits promising insights that could leave even the most curious minds astonished. As we delve into this intellectual rabbit hole, be ready for a revelation that could astonish Alice. (The Stonehenge Hoax – The Stonehenge Layer)

Robert John Langdon (2023) – (The Stonehenge Hoax)

Author’s Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and excerpts from the acclaimed Robert John Langdon Trilogy, a series of books that explore Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post-Glacial Flooding Hypothesis, which offer compelling evidence of ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

Other Blogs

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The Stonehenge Hoax – Stonehenge’s Location

Conundrum 9 – Stonehenge’s Location

The Problem

Archaeologists fail to mention, in their many publications and documentaries, the mystery of Stonehenge’s location in the landscape. One would imagine that such a massive undertaking and monument would be placed in the most prominent position in the landscape, such as atop a hill.  The elevated position would help showcase its magnificence and support its astronomical function, as it would be clear of trees and foliage, which it currently encounters during times such as the Solstice celebrations.

The Solution

Looking at the most important prehistoric site in Britain, Stonehenge, we are asked by archaeologists to consider that it is an astronomical calendar showing the rising and setting of the Sun, Moon, etc.  This assumption may be partially correct, but why would you place the site in an area where trees would obscure your view? If you wish to study the sunrise and sunset with any great accuracy, would you not choose a site at the highest available point?

So why was Stonehenge built where it is, rather than at the top of the hill just 500 metres away that is 30 metres higher – especially considering that the builders took the trouble to get stones from 200 miles away in Wales, for what possible reason would they stop short of obtaining the best setting?

As there is no observational advantage to placing the site here, we must conclude that access to the area was paramount.  If we look at a standard Ordnance Survey (OS) map of Stonehenge, it outlines the landscape and topology of the surrounding area by showing the contours of the hillsides.  But it does not give you a clear idea of how Stonehenge sits in the landscape; for that, we need to look at a profile of the area. (The Stonehenge Hoax – Stonehenge’s Location)

Profile of Stonehenge's Location (east to west) and the Palaeochannel that it sits beside
Profile of Stonehenge (east to west) and the Palaeochannel that it sits beside – (The Stonehenge Hoax – Stonehenge’s Location)

Amazingly, these profiles of Stonehenge show that it was built on the shoreline of a vast river complex.  We can see this evidence on any elevation map, where we find that Stonehenge is sited halfway up a ‘Dry River Valley’ (Palaeochannel) known as ‘Stonehenge Bottom’. 

Stonehenge with the River Avon as it would have looked in 8000 BCE  - Stonehenge's Location Stonehenge's Location -The Stonehenge Hoax
Stonehenge with the River Avon as it would have looked in 8000 BCE – (The Stonehenge Hoax – Stonehenge’s Location)

My Post-Glacial Flooding Hypothesis and case study on the River Avon indicate that groundwater tables during the Mesolithic and Neolithic periods were as high as river terrace T9 (Egberts et al., 2019), at 100m.  This would mean that the river Avon would have filled the dry river valley with groundwater to a depth of 30m above the existing groundwater table – when this happens, the profile changes dramatically.

Avon River Terraces - Stonehenge's Location Stonehenge's Location -The Stonehenge Hoax
Avon River Terraces – (The Stonehenge Hoax – Stonehenge’s Location)

And so suddenly, the impossible becomes possible, the implausible becomes credible, and myth becomes fact, for these profiles can only indicate one conclusion – Stonehenge was built on the side of a hill surrounded by water!

Profiles of Stonehenge in the Landscape North to South and NW to SE - Stonehenge's Location
Profiles of Stonehenge in the Landscape North to South and NW to SE – (The Stonehenge Hoax – Stonehenge’s Location)

These remarkable features are not found on a single side of the monument; we can see them around the entire circumference.  I believe these profiles tell the entire story of Stonehenge.  A picture is said to be worth a thousand words; these pictures show that our most famous ancient monument was once a magnificent feature of the landscape on the edge of a peninsula, surrounded by water.  Now that we have shown that water existed at the Stonehenge site during the Mesolithic and Neolithic periods, we can resequence the events and building phases.

LiDAR Map of Stonehenge Bottom showing Dry River Valley - Stonehenge's Location
LiDAR Map of Stonehenge Bottom showing Dry River Valley – (The Stonehenge Hoax – Stonehenge’s Location)
How Stonehenge would have looked in the Mesolithic period - Stonehenge's Location
How Stonehenge would have looked in the Mesolithic period – (The Stonehenge Hoax – Stonehenge’s Location)

** End of Extract **

The Enigmatic Location of Stonehenge

Positioned atop a chalk plateau, Stonehenge’s location is not merely a matter of chance. The monument is situated near a dry river valley known as Stonehenge Bottom. In the Mesolithic era, this valley was not dry but featured an active tributary fed by natural springs that flowed south to the River Avon.

(The Stonehenge Hoax - Stonehenge's Location)
Mesolithic Stonehenge’s water levels – (The Stonehenge Hoax – Stonehenge’s Location)

This proximity to water sources likely influenced the builders’ choice of location, providing both practical resources and possible ceremonial significance.

Stonehenge Bottom: A Historical Junction

Stonehenge Bottom, also referred to as Stonehenge Fork, is a deeply incised valley that predates the monument itself. Historically, it served as a significant road junction, which some suggest may have influenced the builders’ decision to construct Stonehenge at this particular site.

 (The Stonehenge Hoax - Stonehenge's Location)
The ancient pathways converging at this point underscore its longstanding importance in the landscape.- (The Stonehenge Hoax – Stonehenge’s Location)

Archaeological Oversights

The complex interplay of natural and man-made features around Stonehenge has occasionally led to archaeological oversights. The presence of Stonehenge Bottom, with its historical significance and changing environmental conditions, may have obscured certain archaeological features, leading to misinterpretations or missed discoveries. The valley’s transformation from a wet environment in the Mesolithic to its current dry state adds layers of complexity to archaeological investigations.

The Stonehenge Tunnel and High Water Table Challenges

Modern infrastructure projects near Stonehenge have faced significant challenges due to the area’s unique geology and hydrology. The proposed A303 road tunnel aimed to divert traffic away from the monument, thereby restoring its tranquil setting. However, the project encountered complications due to the high water table and naturally occurring fissures in the surrounding landscape. These conditions necessitated the installation of extensive drainage and settlement facilities to manage water flow without causing environmental harm.

(The Stonehenge Hoax - Stonehenge's Location)
The unpredictable water table, combined with the soft chalk substrate, posed risks such as potential sinkholes, further complicating construction efforts – (The Stonehenge Hoax – Stonehenge’s Location)

Reevaluating Stonehenge’s Significance

The intricate relationship among Stonehenge’s location, its surrounding landscape features such as Stonehenge Bottom, and the area’s geological conditions highlights the monument’s enduring complexity. These factors not only influenced the site’s original selection but also continue to impact both archaeological understanding and modern-day preservation efforts. As research progresses, a deeper appreciation of how natural landscapes and human activities intertwine at Stonehenge will undoubtedly emerge, offering richer insights into this ancient marvel.

Borehole data that supports a Flooded Stonehenge Bottom

Borehole BGS IDs

📊 MATRIX MATERIALS WITHIN ±5 m OF 92.6 m OD

(87.6–97.6 m OD envelope)

The OD ranges shown are only those that lie within the envelope.


🟢 SHELL FRAGMENTS

These boreholes contain shells within 87.6–97.6 m OD:

  • SU14SW24 (P1)
    Shells 95.12–96.12 m
  • SU14SW48 (R4)
    Shells 95.90–97.60 m
  • SU14SW52 (R8)
    Shells 96.80–97.60 m
  • SU14SW53 (R9)
    Shells 89.40–97.60 m
  • SU14SW56 (R12)
    Shells 90.40–92.40 m
  • SU14SW62 (R18)
    Shells 87.60–96.50 mcrosses 92.6 m directly
  • SU14SW64 (R20)
    Shells 97.60 m (upper edge)

👉 At least 6 independent boreholes contain shells within ±5 m of 92.6 m.
This is no longer arguable as “isolated”.


🟡 PEBBLES / GRAVEL

  • SU14SW48 (R4)87.6–95.9 m
  • SU14SW52 (R8)87.6–96.8 m
  • SU14SW56 (R12)87.6–90.4 m
  • SU14SW64 (R20)87.6–97.6 m
  • SU14SW100 (R158)93.3–97.6 m

🟠 COBBLES

  • SU14SW100 (R158)91.3–93.3 mdirect overlap with pole level

🔵 SAND / SILT / MARL

  • SU14SW65 (R21)92.9–97.6 m
  • SU14SW66 (R22)95.1–97.6 m

🟣 ORGANIC STAINING / PEAT

  • SU14SW26 (P3)92.48–97.48 malmost exact coincidence with 92.6 m

SOLUTION FEATURES / VOIDS

  • SU14SW66 (R22)87.6–94.1 m

FACTUAL SUMMARY (NO INTERPRETATION)

Within ±5 m of 92.6 m OD:

  • Shell fragments occur in 6+ boreholes
  • R18 shells explicitly span the pole elevation
  • Cobbles (R158) sit directly on the target height
  • Gravels, sands, organics, and solution features all overlap
  • This is a dense, multi-material, multi-borehole water-active band

Borehole Matrix Data

Boreholes Used in This Analysis

This section draws on 22 boreholes from the Stonehenge Bottom and the immediate surrounding slopes. Together, they form a vertically stacked, laterally distributed dataset spanning the valley floor, interior basin, transport corridors, chemical circulation zones, and upper saturation limits.

Boreholes included:

  • SU14SW24 (P1)
  • SU14SW25 (P2)
  • SU14SW26 (P3)
  • SU14SW48 (R4)
  • SU14SW52 (R8)
  • SU14SW53 (R9)
  • SU14SW56 (R12)
  • SU14SW59 (R15a)
  • SU14SW60 (R16)
  • SU14SW62 (R18)
  • SU14SW63 (19A)
  • SU14SW64 (R20)
  • SU14SW65 (R21)
  • SU14SW66 (R22)
  • SU14SW91 (R132)
  • SU14SW99 (R157)
  • SU14SW100 (R158)
  • SU14SW101 (R172)

(Additional shallow or control boreholes are referenced where relevant in the matrix summary.)


Why These Boreholes Matter – Simple Summary

Each borehole samples a different functional part of the same hydrological system. None is interpreted in isolation.

Valley floor / deep basin cores

  • P2 (SU14SW25) and R172 (SU14SW101)
    These show extreme saturation and dissolution, with over half (and in one case almost all) of the stratigraphy water-affected. They define the deep, long-term flooded core of the system.

Interior basin and basin walls

  • R12 (SU14SW56), P1 (SU14SW24)
    These records sustained standing or slow-circulating water with massive chalk dissolution, fine sedimentation, and organic accumulation. They represent the stable interior of the flooded landscape.

Oscillatory interior zones

  • R9 (SU14SW53), R4 (SU14SW48)
    High event counts with thinner layers show repeated rises and falls in water level. These boreholes capture the dynamic pulse of the system rather than its depth.

Chemical dissolution cores

  • R8 (SU14SW52), R22 (SU14SW66), R132 (SU14SW91)
    Dominated by chalk paste, flint sand, and solution features, these show prolonged saturation and internal circulation, not transport or surface runoff.

Transport corridors

  • R157 (SU14SW99) and R158 (SU14SW100)
    Gravel- and cobble-dominated records with large average event sizes identify where water moved through the system, not where it ponded.

Marginal retreat and downslope contraction

  • R15a (SU14SW59), R16 (SU14SW60)
    These documents declining water levels and reduced event frequency, marking the retreat phase of post-glacial flooding.

Upper saturation limits

  • P3 (SU14SW26), R21 (SU14SW65), 19A (SU14SW63)
    Despite elevations above 105–109 m OD, these boreholes still record gravel transport, organics, solution features, and shell events. They define the maximum vertical reach of the system.

Pole-height control and convergence

  • R18 (SU14SW62)
    This is the statistical anchor. Shells, flood indicators, and event density all converge at ~92.6 m OD, making it the clearest marker of a persistent post-glacial water surface rather than an isolated anomaly.

Why This Dataset Is Important

Taken together, these boreholes show:

  • Water activity across all elevations, not just valley bottoms
  • Ordered transitions from deep saturation → transport → retreat
  • Repeated, fine-scale events are incompatible with single floods
  • Convergence at specific OD levels, especially ~92.6 m

This is not a collection of wet patches.
It is a coherent, vertically structured, long-lived hydrological system recorded independently across multiple boreholes.

Audio Blog

Unearth the Astonishing Secrets of Stonehenge (The Stonehenge Hoax)

Video

Synopsys

Stonehenge, a timeless enigma etched in stone and earth, has stood as a formidable puzzle challenging the intellects of archaeologists and historians alike. Despite the myriad attempts, including books, TV programs, and academic conferences, the secrets of these ancient stones and their encircling ditches have proven elusive. Against this backdrop, we scrutinise the existing thirteen hypotheses, each presenting its narrative but collectively lacking a coherent thread.

In adopting the deductive reasoning akin to Sherlock Holmes, we endeavour to weave these disparate threads into a unified tapestry that not only unravels the mystery of Stonehenge but also shakes the foundations of established academic narratives. This intellectual journey may induce some discomfort as we challenge conventional perceptions and invite a reevaluation of our understanding of the past. Apologies are extended in advance for any cognitive dissonance, but the pursuit of truth and reason mandates an unfiltered presentation of the facts.

So, fasten your seatbelts for an expedition into the archaeological unknown.

As we navigate this intellectual rollercoaster, be prepared for a revelation that might reshape our understanding of Stonehenge and question the foundations of our historical narratives. The dawn of a new archaeological era awaits promising insights that could leave even the most curious minds astonished. As we delve into this intellectual rabbit hole, be ready for a revelation that could astonish Alice.

Robert John Langdon (2023) – (The Stonehenge Hoax)

The Book

The Stonehenge Hoax
The Great Stonehenge Hoax

Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and excerpts from the acclaimed Robert John Langdon Trilogy, a series of books that explore Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post-Glacial Flooding Hypothesis, which offer compelling evidence of ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

Other Blogs

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The Stonehenge Hoax – Station Stones

Conundrum 10 – Station Stones – extract from The Stonehenge Hoax Book

Wasn’t it an astronomical observatory!

The Problem

In recent years, the idea of Stonehenge as an astronomical observation point has become very popular with the ‘new age’ cult that looks at the stones as a ‘magical’ monument rather than a practical, functional site, as the archaeologists have failed to identify the exact reason and purpose for which it was built successfully. So these ‘ideas’ have flourished to fill the void created by the ‘experts’ as they stutter for explanations.  Within this new age, the theory is that the Station stones’ role seems to align with more astrological occurrences than the leading site.

The Solution

The two Station Stone features found on the Stonehenge site are situated on the North West and South East sides of the main monument within the ditched circle – both have individual moats surrounding them.  This can be seen clearly in the Station Stone in the North West, also known as WA3595 (North Mount), discovered in 1956 (Atkinson et al.,1956).  Atkinson observed that ‘a small gully running East-West appears to lie beneath the rubble and earth bank’.

This indicates that the gully was a connecting strip, linking the main henge moat to a smaller moat surrounding the North West Station Stone.  It wouldn’t be an unrealistic suggestion that the southern Station Stone was also connected to the main moat.  If we believe the traditional archaeologists’ commonly held view that the moat surrounding the central monument at Stonehenge was constructed purely as a landscape feature, why would our ancestors connect the two smaller ditches to the main one?

The heel stone also has a ditch indicating its significance.  This ditch almost bisects the avenue ditch, which would also have been full of water.  These ditches are invisible today as they were filled in long ago when the water left the site, but if the Moat and channels were not for water but symbolic purposes, why were they left to fill with soil and disappear from view? It makes no sense unless they are water features that have dried up over the years, as the water table has now fallen by 30 metres.

Hawley and Atkinson both suggested that they were built at the same time: “The ditches of the North and South Barrows are suggested as belonging to this phase (Phase 3b) purely on their resemblance to the Heel stone ditch, an observation made by Professor Atkinson(1978,78).” (Cleal et al., 1995,274).

The Stonehenge Hoax - Station Stones
Southern Station Stone Ditch – The Stonehenge Hoax – Station Stones

The North and South Station stones and the Heel stone ditches are 1–1.2m deep.  Symbolic ditches are needed only to cut the surface to meet their requirements.  These ditches are full of ‘silt’ or ‘marl’ in all cases.  Moreover, it is possible that the same clay liner was added to these features, as the excavation reports various unexplained anomalies and what I see as evidence of water in the ditches.  “There were about 18 inches of dirty chalk upon the bottom… between this, and the humus is a layer of humus with flint single… a part of a decayed horn pick and some flint chips were found on the bottom silt” Hawley, Cleal et al.,1995,278).

The Stonehenge Hoax - Station Stones
Stonehenge Moats, including the Station Stones – The Stonehenge Hoax – Station Stones

In his 1979 – 80 (C91) excavation, Pitts also found this water deposit, where he observed “chalk intermixed with periglacial marl which covers all of the bottom and moat of the sides…. Natural silting of the greater part of the ditch is acceptable” – this indicates that this was left to silt over time and only filled when the Avenue fell into disuse, and the original stones were moved.

By the end of the Neolithic Period, groundwater had subsided to nearly its present level.  Since the great Ice Age melt, the large river that had flowed beneath Stonehenge for 5,000 years was gone.  The groundwater that once covered the land had moved into the surrounding seas and channels, flooding the island once called Doggerland and leaving it 30 metres underwater.  The moat had dried up at Stonehenge, and consequently, the tools used to clean it out in the past (antler picks) were left where they had broken in the ditch.  Sadly, archaeologists currently take these tools as the basis for their incorrect dating of the site, not when the monument was at the height of its power, but when it was last used as a monument to the dead.

The Station Stones (with mounds) seem to have been added later in the site’s development.  This can be seen as the introduction of the Station Stones, which would have obscured the Aubrey post holes; therefore, they must post-date the original Bluestone circle but predate the infilled moat, as they have moats of their own.  We currently don’t know whether knowledge of the tides was no longer necessary or whether the station posts served another purpose. 

The Stonehenge Hoax - Station Stones
Traditional View of the Station Stones – The Stonehenge Hoax – Station Stones

Modern theories use astroarchaeology alignments based on these posts to speculate on the reasons for their existence.  Unfortunately, only two of the four Station Stones have a mound and moats, which does not make sense if they are as crucial as these theorists believe.  Our ancestors built round barrows as signposts, not burial mounds.  These markers are aligned to show where to go and, more importantly, how to get home.

If you lived in the countryside or became a fell-walker in the days before GPS and OS maps, you used to rely on points on the horizon for guidance.  A prehistoric person would have used the same simple principle to get from A to B without getting lost.  Initially, these features would have been on islands, as people used boats to transport themselves and trade.  Then, as the groundwater fell, they would have used barrows as markers on the horizon to guide their walks from point to point.  We still see milestones on the sides of roads today; barrows were the milestones of prehistoric societies.

If you follow the line from the centre of the site through the Northern Station Stone, you will go past no less than five long barrows, 15 round barrows, Casterley Camp, Knap Hill Camp, and the White Horse, finally arriving at Avebury.  This is not bad, for just 36.4 km of travel.  That’s one barrow every 500 metres; not even I could get lost with that marker frequency.  Mathematically, the chance of this number of barrows being in line over such a small distance is less than half of one per cent (0.05 %), or 2000 to 1 in layman’s terms.

The Southern Station Stone points the way to Old Sarum near Salisbury.  Although it is famous for being the site of the original Salisbury Cathedral, archaeologists have also found evidence of flint tools dating back to 3000 BC.  We believe there is clear evidence that Old Sarum was first used in the Mesolithic Period, when it was an island above the raised groundwater level, and that (as in many cases) later sites were built on the location of this original construction. 

Station Stones point to other Mesolithic Sites – The Stonehenge Hoax – Station Stones

The most interesting of all the original markers at Stonehenge must be the Heel Stone.  The Heel Stone is slightly right of centre in the Avenue and, like two of the Station Stones, it has its moat.  If we line ourselves up with the Heel Stone from the centre of Stonehenge, it aligns with Durrington Walls and Woodhenge.  These three places would not only have been essential neighbouring sites to Stonehenge but also gateways to other sites and trading places in the ancient world.  Next to each of the moated Station Stones, a gap was left in the Moat to allow people to cross by the stone in the direction it indicated.  This no doubt led the walker along a path, now lost to us 5,000 years later, via a system of barrows, to the desired location.

New Evidence: Do the Station Stone Mounds Preserve an Earlier Stonehenge?

A re-examination of the excavation records suggests that Stonehenge may have developed through several distinct phases rather than being constructed as a single monument.

Traditionally, archaeologists have treated the enclosure ditch, Aubrey Holes and Station Stones as components of a broadly similar construction phase. However, both the excavation evidence and the hydrological model suggest a more complex sequence.

One of the most significant observations comes from the differing depths of the ditches associated with the monument.

FeatureDepth
Main Enclosure Ditch1.2–1.3m cut depth (1.68m below ground level)
North Station Stone Mound Ditch0.85m
South Station Stone Mound Ditch0.40m

The difference is substantial. The main enclosure ditch is approximately one and a half times deeper than the North Station Stone mound ditch and roughly three times deeper than the South Station Stone mound ditch.

If all three ditches were excavated at the same time for purely symbolic purposes, there is no obvious reason for such variation. A symbolic ditch only needs to be visible. Once a shallow cut has been made into the chalk, its purpose has already been achieved.

The varying depths make more sense if the ditches were intended to intercept groundwater.

Under the Post-Glacial Flooding Hypothesis, groundwater levels in the Stonehenge basin were considerably higher during the early Holocene and gradually declined through time as Britain continued to drain following the end of the Ice Age. Stonehenge was not located on an isolated island, but on a prominent peninsula projecting into a much wetter landscape dominated by marshes, wetlands, shallow lakes and broad watercourses. The site would have been highly visible from both land and water, making it an ideal landmark and navigation point.

In such a landscape, the Station Stone mounds may have been among the earliest constructed features.

Unlike the Aubrey Holes, which form a mathematical ring around the monument, the Station Stones function as directional markers. The northern Station Stone points towards the Avebury region, while the southern Station Stone aligns towards Old Sarum. The Heel Stone provides a third directional marker towards Durrington Walls and Woodhenge. Rather than serving primarily astronomical purposes, these stones appear to function as landscape pointers linking Stonehenge to other important locations.

The surrounding ditches reinforce this interpretation. If groundwater stood close to the surface, only a shallow excavation would have been required to create a water-filled moat around each mound. As groundwater levels gradually declined, deeper excavations would have been required to maintain standing water.

This produces a possible developmental sequence:

Phase 1 – The Peninsula Landmark

A prominent chalk peninsula overlooking an extensive wetland landscape becomes a focal point for movement, trade and the exposure of the dead. The location is naturally visible and accessible from surrounding waterways.

Phase 2 – Construction of the Station Stone Mounds

Small mounds are created at key positions around the peninsula. Each mound is marked by a standing stone and surrounded by a shallow ditch designed to intercept naturally high groundwater levels. These water-filled mounds function as navigational markers and route indicators within the wider landscape.

Phase 3 – Falling Groundwater and New Engineering

As regional groundwater levels decline, larger engineering works become necessary. A deeper enclosure ditch is excavated around the central monument to maintain access to water and preserve the site’s hydrological significance.

Phase 4 – The Aubrey Hole Reconstruction

The Aubrey Hole ring is added to an already existing landscape. Existing Station Stone mounds and marker stones are retained and incorporated into the new design. The site is transformed into the predictive computational device described elsewhere in this work, while preserving elements of its earlier navigational role.

Phase 5 – The Sarsen Monument

The final stone monument converts the site into a permanent memorial landscape, preserving the memory of an earlier world shaped by water.

This revised interpretation resolves several long-standing contradictions. The Station Stone mounds no longer appear as awkward additions to the monument but become surviving elements of an earlier phase of construction. Their directional alignments, individual ditches, and strategic positions make sense as navigational markers within a wetland environment, while the later enclosure ditch and Aubrey Hole system represent a major redesign in response to changing environmental conditions.

Most importantly, the hypothesis generates a testable prediction. If the bases of the various ditches can be accurately surveyed and compared using Ordnance Datum elevations, older ditches should terminate at higher groundwater levels than younger ditches. The chronology of Stonehenge may therefore be recoverable not through typology or speculation, but through the hydrology of the monument itself.

Rather than preserving a single moment in time, Stonehenge may preserve a record of thousands of years of adaptation to a changing post-glacial landscape.

Unearth the Astonishing Secrets of Stonehenge (The Stonehenge Hoax)

Introduction

Video

Synopsys

Stonehenge, a timeless enigma etched in stone and earth, has stood as a formidable puzzle challenging the intellects of archaeologists and historians alike. Despite the myriad attempts, including books, TV programs, and academic conferences, the secrets of these ancient stones and their encircling ditches have proven elusive. Against this backdrop, we scrutinise the existing thirteen hypotheses, each presenting its narrative but collectively lacking a coherent thread.

In adopting the deductive reasoning akin to Sherlock Holmes, we endeavour to weave these disparate threads into a unified tapestry that not only unravels the mystery of Stonehenge but also shakes the foundations of established academic narratives. This intellectual journey may induce some discomfort as we challenge conventional perceptions and invite a reevaluation of our understanding of the past. Apologies are extended in advance for any cognitive dissonance, but the pursuit of truth and reason mandates an unfiltered presentation of the facts.

So, fasten your seatbelts for an expedition into the archaeological unknown.

As we navigate this intellectual rollercoaster, be prepared for a revelation that might reshape our understanding of Stonehenge and question the foundations of our historical narratives. The dawn of a new archaeological era awaits promising insights that could leave even the most curious minds astonished. As we delve into this intellectual rabbit hole, be ready for a revelation that could astonish Alice. (The Stonehenge Hoax)

Robert John Langdon (2023) – (The Stonehenge Hoax)

The Book

The Stonehenge Hoax
The Great Stonehenge Hoax

Author’s Biography

Robert John Langdon, a polymathic luminary, emerges as a writer, historian, and eminent specialist in LiDAR Landscape Archaeology.

His intellectual voyage has been interwoven with stints as an astute scrutineer in government and grand corporate bastions, a tapestry spanning British Telecommunications, Cable and Wireless, British Gas, and the esteemed University of London.

A decade hence, Robert’s transition into retirement unfurled a chapter of insatiable curiosity. This phase saw him immerse himself in Politics, Archaeology, Philosophy, and the enigmatic realm of Quantum Mechanics. His academic odyssey traversed the venerable corridors of knowledge hubs such as the Museum of London, University College London, Birkbeck College, The City Literature Institute, and Chichester University.

In the symphony of his life, Robert is a custodian of three progeny and a pair of cherished grandchildren. His sanctuary lies ensconced in the embrace of West Wales, where he inhabits an isolated cottage, its windows framing a vista of the boundless sea – a retreat from the scrutinising gaze of Her Majesty’s Revenue and Customs, an amiable clandestinity in the lap of nature.

Exploring Prehistoric Britain: A Journey Through Time

My blog delves into the fascinating mysteries of prehistoric Britain, challenging conventional narratives and offering fresh perspectives grounded in cutting-edge research, particularly LiDAR technology. I invite you to explore some key areas of my research. For example, the Wansdyke, often cited as a defensive structure, is re-examined in light of new evidence. I’ve presented my findings in my blog post Wansdyke: A British Frontier Wall – ‘Debunked’, and a Wansdyke LiDAR Flyover video further visualises my conclusions.

My work also often challenges established archaeological dogma. I argue that many sites, such as Hambledon Hill, commonly identified as Iron Age hillforts, are not what they seem. My posts Lidar Investigation Hambledon Hill – NOT an ‘Iron Age Fort’ and Unmasking the “Iron Age Hillfort” Myth explore these ideas in detail and offer an alternative view. Similarly, sites like Cissbury Ring and White Sheet Camp receive re-evaluations based on LiDAR analysis in my posts “Lidar Investigation Cissbury Ring through time” and “Lidar Investigation White Sheet Camp, revealing fascinating insights into their true purpose. I have also examined South Cadbury Castle, often linked to the mythical Camelot56.

My research also extends to ancient water management, including the role of canals and other linear earthworks. I have discussed the true origins of Car Dyke in multiple posts, including Car Dyke – ABC News Podcast and Lidar Investigation Car Dyke – North Section, which suggest a Mesolithic origin 2357. I also explore the misidentification of Roman aqueducts, as seen in my posts on the Great Chesters (Roman) Aqueduct. My research has also been greatly informed by my post-glacial flooding hypothesis, which has helped explain landscape transformations over time. I have discussed this hypothesis in several posts, including AI now supports my Post-Glacial Flooding Hypothesis and Exploring Britain’s Flooded Past: A Personal Journey

Finally, my blog also investigates prehistoric burial practices, as seen in Prehistoric Burial Practices of Britain and explores the mystery of Pillow Mounds, often mistaken for medieval rabbit warrens, but with a potential link to Bronze Age cremation in my posts: Pillow Mounds: A Bronze Age Legacy of Cremation? and The Mystery of Pillow Mounds: Are They Really Medieval Rabbit Warrens?. My research also includes astronomical insights into ancient sites, for example, in Rediscovering the Winter Solstice: The Original Winter Festival. I also review new information about the construction of Stonehenge in The Stonehenge Enigma.

Further Reading

For those interested in British Prehistory, visit www.prehistoric-britain.co.uk, a comprehensive resource featuring an extensive collection of archaeology articles, modern LiDAR investigations, and groundbreaking research. The site also includes insights and excerpts from the acclaimed Robert John Langdon Trilogy, a series of books that explore Britain during the Prehistoric period. Titles in the trilogy include The Stonehenge Enigma, Dawn of the Lost Civilisation, and The Post-Glacial Flooding Hypothesis, which offer compelling evidence of ancient landscapes shaped by post-glacial flooding.

To further explore these topics, Robert John Langdon has developed a dedicated YouTube channel featuring over 100 video documentaries and investigations that complement the trilogy. Notable discoveries and studies showcased on the channel include 13 Things that Don’t Make Sense in History and the revelation of Silbury Avenue – The Lost Stone Avenue, a rediscovered prehistoric feature at Avebury, Wiltshire.

In addition to his main works, Langdon has released a series of shorter, accessible publications, ideal for readers delving into specific topics. These include:

For active discussions and updates on the trilogy’s findings and recent LiDAR investigations, join our vibrant community on Facebook. Engage with like-minded enthusiasts by leaving a message or contributing to debates in our Facebook Group.

Whether through the books, the website, or interactive videos, we aim to provide a deeper understanding of Britain’s fascinating prehistoric past. We encourage you to explore these resources and uncover the mysteries of ancient landscapes through the lens of modern archaeology.

For more information, including chapter extracts and related publications, visit the Robert John Langdon Author Page. Dive into works such as The Stonehenge Enigma or Dawn of the Lost Civilisation, and explore cutting-edge theories that challenge traditional historical narratives.

Other Blogs

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t