Showing posts with label Britain's First Industrial Revolution. Show all posts
Showing posts with label Britain's First Industrial Revolution. Show all posts

Friday, August 1, 2014

World Heritage Sites - Pattadakal

 Group of Monuments at Pattadakal (1987), Karnataka


Chalukyan rulers were not only empire builders, but great patrons of art whose encouragement prompted the artists and craftsmen to experiment and innovate in different architectural styles and giving it a new dimension. It is in their period that transition from rock-cut medium to structural temples took place.

Pattadakal located in Bijapur district of Karnataka was not only popular for Chalukyan architectural activities but also a holy place for royal coronation, 'Pattadakisuvolal'. Temples constructed here mark the blending of the Rekha, Nagara, Prasada and the Dravida Vimana styles of temple building.

The oldest temple at Pattadakal is Sangamesvara built by Vijayaditya Satyasraya (AD 697-733). The other notable temples at Pattadakal are the Kadasiddhesvara, Jambulingeswara both attributed to 7th century A.D. while Galaganatha temple was built a century later in the style of rekha nagara prasada. The Kasivisvesvara temple was the last to be built in early Chalukyan style. The Mallikarjuna temple was constructed by Rani Trilokyamahadevi to celebrate the victory over the Pallavas by Vikramaditya II. She is also credited to have built the Virupaksha temple influenced by the architecture of the Kailasanatha temple at Kanchipuram. The Virupaksha temple later served as a model for the Rashtrakuta ruler Krishna I (757 -783 A.D.) to carve out the great Kailasa at Ellora.

However, the last addition at Pattadakal was made during the reign of Rashtrakuta ruler Krishna II of the 9th century A.D. in form of a Jaina temple, locally famous as Jaina Narayana, with its two lower storeys functional.

The sculptural art of the early Chalukyas is characterised by grace and delicate details. The ceiling panels of the navagrahas, dikpalas, the dancing Nataraja, the wall niches containing Lingodbhava, Ardhanarisvara, Tripurari, Varahavishnu, Trivikrama bear ample testimony to the sculptor's skill as well as the cult worship in vogue. The narrative relief illustrating certain episodes from the Ramayana, Mahabharata, Bhagavata and Panchatantra fitted well with these grand religious edifices.

The Sangamesvara, Virupaksha and Mallikarjuna temples at Pattadakkal exhibit to a large degree the southerly elements in their vimanas, as crystallized in the contemporary Pallava temples.

The Sangamesvara, the earliest of the three, built by Chalukya Vijayaditya (697-733), is nearer the Pallava form in that it has no sukanasika, while the other two, which possess this, are the earliest of the Chalukyan type and its derivatives possessing this architectural member, as also does the Kailasa at Ellora. Both the Sangamesvara and the larger Virupaksha are similar to each other in being square on plan from the base to sikhara. The Virupaksha, built by the queen of Vikramaditya II (733-46), is the earliest dated temple with the sukanasika, being closely followed by the Mallikarjuna, built by another queen of the same king.

The main vimana of the Sangamesvara is of three storeys. The lowermost storey is surrounded by two walls, the inner and outer, the second storey being an upward projection of the inner wall, while the outer wall encloses the covered circumambulatory round the sanctum.
              
The Virupaksha is a large complex consisting of a tall vimana with axial mandapas and peripheral sub-shrines round the court, enclosed by a wall with gopura-entrances in front and behind, all designed and completed at one time. As such, this is the earliest extant temple-complex in the Chalukyan series. The massive gopuras are also the earliest. The compound-wall of the complex, following the plan of the group itself, has on its coping kuta and said-heads, suggestive of a derivation from the Shore-temple at Mahabalipuram-a device which gives the impression of a lower storey when viewed from a distance.

The Mallikarjuna, built immediately after and close to the Virupaksha, is a smaller temple with a four-storeyed vimana with a circular griva and sikhara. It has more or less a similar plan.



Open from sunrise to sunset

Entrance Fee:

Citizens of India and visitors of SAARC (Bangladesh, Nepal, Bhutan, Sri Lanka, Pakistan, Maldives and Afghanistan) and BIMSTEC Countries (Bangladesh, Nepal, Bhutan, Sri Lanka, Thailand and Myanmar) - Rs. 10 per head.

Others: US $ 5 or Indian Rs. 250/- per head


(children up to 15 years free

Wednesday, July 30, 2014

Herschel Space Observatory Running On Empty


After three years of scouring the universe for evidence of the most distant galaxies, the Herschel Space Observatory is running out of fuel.

The European Space Agency launched the craft in 2009 with some of the most advanced light-sensing equipment ever developed. Only when it got above Earth’s clouds would Herschel be able to peer into deep space, up to 10 billion light years away.

The module was named after William Heschel, who discovered Uranus back in 1781, in hopes that new technology to see past interference like dust, asteroids and clouds, might yield some clues about the far reaches of the universe.

Over those three years, Herschel has radioed back some astounding data. From millions of miles away, it could spot molecular oxygen in the Orion star cluster . Several months later, it helped crystallize scientists’ long-held views that Earth’s water likely came from comets.

Unlike the Voyager spacecraft, which have spent their lives traveling away from Earth, Herschel sat still, held in place between the Earth and Sun’s gravity about 1.6 million kilometers (990,000 miles) away. It launched with 2,160 liters (570 gallons) of liquid helium to cool its on-board computers, which run mostly on solar power. Now, European scientists expect the helium tank to run dry in March, causing the equipment to overheat and skew infrared data coming in.

At the end of it’s useful life, Herschel’s story isn’t such bad news. Steve Eales, an astronomer at the University of Cardiff in Wales, has spent months following Herschel’s data, once turning up evidence of 7,000 new galaxies in just 16 hours. Even when Heschel’s fuel tank runs dry, Eales and his colleagues likely have enough data to keep making new discoveries about the universe long into the future


Correction: An earlier version of this story said the University of Cardiff was in England. It is, in fact, in Wales. We regret the error.

Saturday, June 28, 2014

World Heritage Sites - Mahabodhi Temple at Bodhgaya

Mahabodhi Temple Complex, Bodhgaya (2002), Bihar


Bodh Gaya is associated with the enlightenment of Lord Buddha (566-486 B.C.). The sacred Bodhi tree under which he is believed to have attained enlightenment. The place is highly venerated by the Buddhists. Emperor Asoka visited Bodh Gaya around 260 B.C. and constructed a small temple near the Bodhi tree. An inscription datable to 1st – 2nd century A.D. mentions that the temple of Asoka was replaced by a new one.

Fahien first makes reference to the main temple and the Bodhi tree in 404-05 A.D. Hieun Tsang, who visited the site in 637 A.D. mentions the presence of walls surrounding the Bodhi tree, within which stood the Mahabodhi temple nearly 160 feet tall and a large fine sanctuary. Several additions and alterations took place and the present temple may be datable to the 6th century A.D. The temple fell into disuse in the 13th century A.D. after the conquest of this region by the Delhi Sultanate. During the 19th century, the Burmese kings made certain repairs which were continued by the British in 1880-84.

The temple covers an area of nearly 4.8 hectares and 55 m in height. The sanctum carries a lofty pancharatha sikhara of a straight-edged pyramidal design, demarcated into seven storeys by bhumi-amalakas (amalakas occurring at the corners of the sikhara to denote storeys).

The sacred Bodhi tree stands to the west of the above temple. It is known as the pipal tree (Ficus religiosa) in India. It is believed that this tree is the direct descendant of the original tree under which Lord Buddha meditated.

Thursday, June 26, 2014

Fish near coal-fired power plants have lower levels of mercury

A new study from North Carolina State University finds that fish located near coal-fired power plants have lower levels of mercury than fish that live much further away. The surprising finding appears to be linked to high levels of another chemical, selenium, found near such facilities, which unfortunately poses problems of its own.

"We found that fish in lakes located at least 30 kilometers (km) from a coal-fired power plant had mercury levels more than three times higher than fish of the same species in lakes that are within 10 km of a plant," says Dana Sackett, a Ph.D. student at NC State and the lead author of a paper describing the study. "This information will inform health and wildlife officials who make determinations about fish consumption advisories and wildlife management decisions."

The findings are surprising because coal-fired power plants are the leading source of mercury air emissions globally, and a significant amount of that mercury is expected to settle out of the air within 10 km of a plant's smokestacks. Mercury is a bioaccumulative toxin that builds up in animal tissues -- including fish -- and can pose public health problems related to fish consumption.

The researchers examined largemouth bass and bluegill from 14 freshwater lakes -- seven within 10 km of a plant and seven that were a minimum of 30 km from a plant. The species were chosen because they are commonly caught and eaten by recreational anglers, and because they represent two very different places in the food chain. Largemouth bass are apex predators at the top of the food chain, which consume smaller fish. As a result, since mercury builds up in the food chain, they would be expected to show higher levels of mercury. Bluegill are smaller fish that primarily dine on invertebrates, such as insects, and would be expected to show lower levels of mercury.

The researchers found that the mercury levels went up more than threefold in both species at lakes located further from the power plants, meaning that the location effect impacts fish regardless of their place in the food chain.

The researchers think that the lower mercury levels near power plants are likely linked to selenium levels. Fish tissue samples taken within 10 km of a coal-fired power plant showed selenium levels three times higher than samples taken from fish located further away. This shows an inverse relationship to the mercury levels -- the higher the selenium level, the lower the mercury level.

Selenium, which is also emitted by coal-fired plants, is known to have an antagonistic relationship to mercury, though the specific mechanisms at play are not clearly defined. In other words, the selenium prevents fish from accumulating high levels of mercury, and we're still working on the specifics of how that happens.
However, while lower mercury levels are a good thing, higher levels of selenium pose their own risks. "Selenium is an important dietary element," says Dr. Derek Aday, associate professor of biology at NC State and a co-author of the paper. "But at high levels, it can have serious consequences -- including lethal effects and an array of health problems for fish and wildlife."

The research was funded by the Water Resources Research Institute. The paper will be published in a forthcoming issue of the journal Ecotoxicology. The paper was co-authored by Sackett, Aday, Dr. James Rice, professor of biology at NC State, Dr. Gregory Cope, professor of toxicology at NC State, and Dr. David Buchwalter, assistant professor of toxicology at NC State.

Monday, May 26, 2014

Richard III to be reburied in Leicester

The remains of Richard III are to be re-interred in Leicester Cathedral – likely next spring – a judicial review concluded today (23 May).


Addressing crowds of journalists in the cathedral, shortly after the High Court handed down their decision at 10am, the Rt Rvd Tim Stevens, Bishop of Leicester, announced that the judges had ruled that the Ministry of Justice license granted at the outset of the University of Leicester’s excavations on the Grey Friars site (see CA 272 for more on this project),  - which stated that, if found, Richard’s bones would be reburied in Leicester Cathedral – should be upheld.

The license had been contested as, after the identity of the skeleton had been confirmed (see CA 277), the Plantagenet Alliance, a group of 15 distant relatives of the king, argued that there should have been wider consultation before Richard’s final resting place was determined. But now, following nine weeks of deliberation, their legal challenge has been dismissed.

‘We are of course delighted that the ruling has gone in our favour – we can now begin planning for the re-interment to proceed with dignity and honour, ‘ said Bishop Stevens.

He went on to read out a postscript that the judges had appended to their ruling:


‘Since Richard III’s exhumation on 5 September 2012, passions have been roused and much ink has been spilt. Issues relating to his life and death and place of re-interment have been exhaustively examined and debated. The Very Reverend David Monteith, the Dean of Leicester Cathedral, has explained the considerable efforts and expenditure invested by the Cathedral in order to create a lasting burial place “as befits an annointed king”. We agree that it is time for Richard III to be given a dignified reburial, and finally laid to rest. ‘

Dean David Monteith added that he hoped the ceremonies surrounding Richard’s re-interment would help to foster a spirit of cooperation and reconciliation between differing parties.

‘Wherever you sat on this matter, everyone is welcome to participate in what comes next,’ he said. ‘We are going to lay a man and an annointed king to rest, and we should do this as one community and one nation working together to ensure it is done with dignity and honour. ‘

Plans for the reburial itself are still in progress, though it is expected that the ceremony will involve events over four or five days, during which Richard’s remains will be taken back to Bosworth battlefield, before being processed back into Leicester via a number of sites associated with the battle, and churchyards where other people killed on that day are buried.

Richard III will then lie in state in the cathedral for a number of days to allow members of the public to pay their respects, after which he will be buried in a tomb (the revised design of which is to be unveiled in 3-4 weeks) just a few feet from the ledger stone currently dedicated to him in the cathedral’s choir.

‘The cathedral is a working building so the location of the tomb had to allow for the circulation of people, and the performance of services, ‘ said Richard Buckley of University of Leicester Archaeological Services (ULAS), who directed the Grey Friars Project. ‘The choir is also the part of the church where Richard was originally buried at Grey Friars, but the new location is a definite upgrade: before, he had been laid to rest in a place of ambiguous honour – he was only just inside the choir, about as far from the altar as you can get, and hidden away in a part of the church that the public did not have access to. But now he will be at the eastern end of the choir, very close to the altar – it is a much more honourable position.’

The judges’ ruling also sets an important precedent for future archaeological work, he added.

‘It is normal practice, when excavating burials that are around 100 years old or less, to advertise in the local press to give close relatives the right to come forward and be consulted before exhumation, ‘ he said. ‘But with Richard III’s remains, the bones were over 500 years old, so normally you wouldn’t be expected to consult on them. Our worry was that, if the review had gone against us, in future excavations we would be looking at a situation where, if any earlier burials were found to be identifiable, whether at the excavation or analysis stage, we would potentially have to consult all of their relatives – that would just be unworkable. You can imagine, we are very relieved that the result has gone the way it did!’

The Excitement of Hands-on Archaeology

Nothing beats the excitement of hands-on archaeology, and with the new digging season almost upon us, there is no time to lose.

This is a chance to get practical experience, either before heading off to university, or putting into practice what has been studied in theory. But for most, this is simply a glorious way to pass the time.

Our guide covers the full gamut of locations, periods, and types: from fieldwalking to recording and cataloguing, from early Neolithic to Medieval and later – there is something for everyone. Some jobs require stamina, but many do not. Young or old, fit or not, time rich or time poor, all you need is enthusiasm and a desire to get involved.

Use the options below to sort the digs by area, by cost, or by time period – whatever your budget or area of interest, there will be something to suit you. If you don’t have much time to spare try the ‘Dig for a Day’ list, or ‘All Inclusive’ if you want food and accommodation within the cost. There is also an Advice and Useful Info page that will help you know what to expect, along with advice from both diggers and supervisors, as well as a handy checklist so nothing gets forgotten!

So, if you are passionate about Prehistory, interested in the Iron Age, ruminating about Romans, or looking for a new angle on the Saxons, get out into the fresh air and discover…who knows what?

In your complete guide to archaeological excavations around the country, there is no excuse not to join in: look through our list of digs, find one that suits you – then enjoy getting dirty digging up the past!

Wednesday, May 21, 2014

Archaeologists dig major new find at Pentridge Prison

Archaeologists say remains of a rare, circular 1850s prison block unearthed at the former Pentridge Prison is of world significance in penal history.

The public will next month be able to view the extraordinary bluestone foundations of the panopticon, shaped like a Trivial Pursuit token, which experts say is one of the few examples of its type to survive.

It was part of a brutal 19th-century movement to keep prisoners in solitary contemplation, under total surveillance.


Pentridge had three: this one, next to A Division on the north of the site is the first to be unearthed. Later in May, excavation will start on two more next to B Division to the south.
Archaeologist and ABC TV host Adam Ford said a teenage Ned Kelly, when at Pentridge for three years in the early 1870s, would have spent time in at least one of them. ‘‘He went in to Pentridge a 16-year-old as a ratbag and came out as a hardened criminal with a big chip on his shoulder.’’
In A Division, new prisoners spent 23 hours alone in their tiny cells, and for the remaining hour were each marched, with caps over their eyes, into the adjacent, one-man, wedge shaped panopticon ‘‘airing yard’’.
Guards watching from a central tower knew prisoners by number. The yard had no roof, and inmates were expected to stay silent and study the Bible.
The method was ditched by the early 1900s as prisoner numbers and therefore cell sharing increased.
After its demolition in the 1950s, the ruins were buried under a yard by the time Pentridge closed in 1997.
The Taiwanese based company Shayher Group, which owns 6.76 hectares of the former prison, has employed Mr Ford’s consultancy Dig International to excavate five areas of archaeological importance as a Heritage Victoria condition of a massive housing and commercial development.
Using an excavator and then mattocks and pickaxes, the archaeologists took 10 days to expose the panopticon footings.
Mr Ford said the results exceeded all expectations. ‘‘We’ve all been completely blown away by it.’’
‘‘It’s ‘wow’ archaeology, because it gets that response – when people come around that corner they see it and it’s very striking.
‘‘We’d done some test excavations; we know stuff was here, but had no idea of its integrity and the extent and also the grandeur of the remains.
‘‘So it really wasn’t until we stood back, panting a bit after we’d finshed excavating, that we looked at it and went, ‘good grief, this is amazing’.’’
Mr Ford believes it is ‘‘the most intact foundation of this panopticon-style building anywhere in the world’’.
‘‘It will be a long time, if ever, that I get to excavate anything as special as this site.’’
He said about six prisons around the world adopted this circular style from a late 1700s idea by prison reformer Jeremy Bentham, and fewer than 12 of them were built, including at Pentonville in Britain, in Port Arthur in Tasmania, and the Old Melbourne Gaol, but little remained of most of them.
Heritage Victoria senior archaeologist Jeremy Smith, who has worked on many Victorian digs including the discovery of the remains of 35 executed inmates, including Ned Kelly at Pentridge in 2009, said the Pentridge panopticons ‘‘are rare on a world scale’’. ‘‘They give us a worldwide perspective of a different approach to the management of prisoners, particularly the deprivation of identity.’’
The dig team, which includes students from Melbourne and La Trobe universities, is now unearthing the foundations of 360 tiny cells that were part of nearby C Division.
The two-storey, 1859 bluestone C Division was condemned in the 1880s as unfit for habitation, but continued operations until its demolition in the early 1970s.
Shayher spokesman Robert Larocca, said the future of the panopticon and other finds was yet to be determined.
Dig updates will be posted from Friday, May 9 at historicpentridge.com.au. Later this month the website will post details of free public tours of the site to be held in late June.





Saturday, May 17, 2014

Exclusive: Found after 500 years, the wreck of Christopher Columbus’s flagship the Santa Maria


The wreck of the ‘Santa Maria’, as envisaged in 1492

Shipwreck found off coast of Haiti thought to be one of the most significant underwater discoveries in history
More than five centuries after Christopher Columbus’s flagship, the Santa Maria, was wrecked in the Caribbean, archaeological investigators think they may have discovered the vessel’s long-lost remains – lying at the bottom of the sea off the north coast of Haiti. It’s likely to be one of the world’s most important underwater archaeological discoveries.

“All the geographical, underwater topography and archaeological evidence strongly suggests that this wreck is Columbus’ famous flagship, the Santa Maria,” said the leader of a recent reconnaissance expedition to the site, one of America’s top underwater archaeological investigators, Barry Clifford. 

“The Haitian government has been extremely helpful – and we now need to continue working  with them to carry out a detailed archaeological excavation of the wreck,” he said.

So far, Mr Clifford’s team has carried out purely non-invasive survey work at the site – measuring and photographing it.

Tentatively identifying the wreck as the Santa Maria has been made possible by quite separate discoveries made by other archaeologists in 2003 suggesting the probable location of Columbus’ fort relatively nearby. Armed with this new information about the location of the fort, Clifford was able to use data in  Christopher Columbus’ diary to work out where the wreck should be.

An expedition, mounted by his team a decade ago, had already found and photographed the wreck – but had not, at that stage, realized its probable identity.

It’s a current re-examination of underwater photographs from that initial survey (carried out back in 2003), combined with data from recent reconnaissance dives on the site (carried out by Clifford’s team earlier this month), that have allowed Clifford to tentatively identify the wreck as that of the Santa Maria.

The evidence so far is substantial. It is the right location in terms of how Christopher Columbus, writing in his diary, described the wreck in relation to his fort.

The site is also an exact match in terms of historical knowledge about the underwater topography associated with the loss of the Santa Maria. The local currents are  also consistent with what is known historically about the way the vessel drifted immediately prior to its demise.

The footprint of the wreck, represented by the pile of ship’s ballast, is also exactly what one would expect from a vessel the size of the Santa Maria.

Using marine magnetometers, side-scan sonar equipment and divers, Mr. Clifford’s team has, over several years, investigated more than 400 seabed anomalies off the north coast of Haiti and has narrowed the search for the Santa Maria down to the tiny area where the wreck, which the team thinks may well be Columbus’ lost vessel, has been found.

Taj Museum, Taj Mahal (District Agra, Uttar Pradesh)

The museum was established in 1982 in the ground floor in western Naubat Khana, also known as Jal Mahal, with in the Taj Mahal complex. It is a double storied building having a quadrangle projection outside and is built on a raised platform.

The museum comprises of three galleries in addition to the main hall and has on display various exhibits relating mostly to the construction of the Taj Mahal and to the period of its builders. Totally 121 antiquities are on display, which are broadly categorized as Mughal miniature paintings, manuscripts, government decrees, specimen of calligraphy, arms, utensils, plans and drawings of Taj Complex, paintings, specimen inlay work, marble pillars, etc.

In main hall the paintings of Shah Jahan and his most favourite wife Mumtaz Mahal both on ivory, encased in ornamental wooden frame, replicas of coins minted Akbarabad (Agra) are on display.

Paintings from the famous Persian epic Shahnama of Firdausi, an interesting manuscript of Chaihl Majlis dated to 1612 AD bearing the signature of Shah Jahan under the royal seal dated 4th February 1628 and other are displayed in this gallery.

The first gallery contains plans and colour drawings showing the salient features of the architecture of Tai Mahal. The most worthwhile is a site plan, front elevation of the tomb and other details are recorded on this site plan. Copies of Shah Jahan’s farmans dated AH 1042 (August 1632) addressed to Raja Jai Singh and another farman dated 20th June 1637 addressed to Raja Jai Singh of Jaipur to ensure regular supply of the makrana marble, etc. required in the construction of the imperial building, Taj Mahal are also exhibited in the gallery.

The second gallery display some jade and porcelain objects like Quaran stand carved of Jade, a beautiful ornamented spouted vase (lota) carve of Jade, mirror mounted on stone, bowl and dishes of Celadon ware. Arms like swords, daggers and a world map showing the places from where stones were imported for inlay work of Taj Mahal along with specimens of these semiprecious stones are also in display.

In third gallery important royal farmans and documents, Waslis (specimen) of famous calligraphy of the period, two paintings of Taj Mahal by British artist Daniel in the year 1795 AD are displayed. An interesting order of General Perron of the period of Shah Alam II recording the details of the auction of fruits in the garden of the mausoleum of Taj ganj is also displayed. The royal farmans of Shah Jahan about registering a grant of land in various villages and confirming a grant of hereditary land to Shaikh Hatim is also find placed in the gallery.


Opening Hours : 10.00 am to 5.00 pm
Closed on – Friday


Entrance Fee :
Rs. 25/- per head
(Children up to 15 years free)

Friday, May 16, 2014

Britain's First Industrial Revolution

While the advances in technology and manufacturing that took place in Britain during  the 18th and 19th centuries have entered the mainstream of history, few know about the industrialisation carried out during the Roman occupation, says Simon Elliott.


The phrase ‘Industrial Revolution’ plays such a central role in the narrative of British history that few historians have asked whether the British Isles experienced anything similar prior to its advent in the 18th century. It seems, however, that Britain did experience a form of industrial revolution, from the later first century through to the the end of the fourth, the period of the Roman occupation. During this time, parts of the British Isles, especially in the south and the east, developed a wide variety of industries, which, like those of the Industrial Revolution of the 18th and 19th centuries, were large in scale, were marked by engineering innovation and involved complex manufacturing processes. These industries became incorporated into a sophisticated international economic system, supported by an advanced maritime and land-based transport infrastructure. This revolution played a major role in shaping the nature of society throughout the period of the Roman occupation.

While there is no question that the economy of the Roman Empire as a whole remained overwhelmingly agrarian, industry played an important role, a fact still evident today in the high levels of pollutants that remain from Roman industrial activity (such as lead and copper emissions), which can be traced in the Greenland ice cores. Using ice-core copper pollution as an example, it appears that the only other major period of substantial industrial output anywhere in the world between the Roman Empire and the modern Industrial Revolution occured during the 11th century, in Sung dynasty China. The scale of industry that developed in Britain during the Roman occupation was certainly revolutionary compared with what had existed before, during the later Iron Age. It was also extraordinary in comparison with what came later.

The economy of the Roman Empire featured large-scale state-controlled mining (metalla) and quarrying enterprises, as well as manufactories producing a wide variety of products, including: weapons of uniform quality and size; fine Samian ware pottery; textiles; milling and other food production enterprises, not least the ubiquitous garum fish sauce, beloved throughout the Empire. Such a suite of industries also became a major feature of the British experience of Romanitas. Examples include the huge iron producing enterprises (initially in the Weald of Sussex, Surrey and Kent and later in the Forest of Dean and the East Midlands); industrial-scale quarrying to serve the urbanisation and later fortification of Britain (a demand fulfilled by a thriving construction sector); tile and brick production; mining of all kinds; a huge number of pottery kilns; mosaic and glass production; salt production; and, possibly, the manufacture of garum. Meanwhile the production of quern stones flourished, along with the milling industry to which it was central, while Britain was also home to a thriving textile industry. The latter was highly regarded throughout the empire for two textile products: a form of the birrus hooded cloak and a fine quality tapetia rug.

A coin-minting industry also developed, revealing of the political and economic progress made in the province during the occupation. There were more coins minted and circulated in Britain during the occupation than ever before. The principal official mint was in London, where coins were produced between AD 286-324 and 383-388. Of the 29 major mints from across the empire represented in the British Portable Antiquities Scheme database, the 2,987 coins made in London represent the fifth largest category, an impressive statistic as it is surpassed only by the output of the major urban centres of Rome itself, Trier, Arles and Lyon.

To look at a specific regional example of Roman industrialisation in Britain, the south-east featured a range of enterprises, largely based on the extractive industries. These sat broadly within three economic zones of activity. The first was around the river valleys of the Darent, a tributary of the Thames, and (principally) the Medway, both of which were within the economic sphere of London. A second was in a zone running down the east Kent coast from Dover to Lympne (in the economic sphere of Canterbury and the imperial gateway at Richborough). The third was in the Weald of Kent, Sussex and Surrey.

While the Darent Valley was notable for the large villa estates constructed for Roman London’s political and economic elites, the luxurious villas constructed along the Medway valley belonged in the main to those who managed a vast and flourishing industrial landscape based around extensive ragstone quarries above the tidal reach at Allington. This industry was facilitated by a complex river infrastructure in the form of locks and weirs, which made the Medway navigable to the ships and barges that carried the enormous quantities of ragstone into the Thames Estuary and beyond.

From there the ragstone was shipped around the south-east, as far afield as Colchester (where it was used in the construction of the town’s Claudian temple and the gates of the Circus) and Bradwell (later a Saxon shore fort) to the north, London to the west and Richborough (where it was used in the monumental arch and its superseding Saxon shore fort) to the east. The scale of this industrial activity has led scholars to consider the possibility that the Roman state was directly involved, at least during the earlier years of the occupation. The excavation in the early 1960s of the 14 metre-long merchant ship Blackfriars 1 has shed light on this process. This vessel, dated to the early second century, was found by Blackfriars Bridge on the western edge of the City of London, just where the River Fleet would have entered the Thames. Crucially, it foundered while carrying 26 tonnes of Kentish ragstone from the Medway valley quarries, still in its hold when it was discovered some 1,800 years later.

While there is evidence that other materials were quarried in the Medway valley during the occupation – for example, the sand and chalk for which the industry is better known in the modern era – it is the ragstone quarrying which has left its unmistakable mark to this day on the Roman south-east. Ragstone is a grey-green, sandy and glauconitic limestone found within the Hythe Beds of the Lower Greensand geological formation near Folkestone. It was highly valued by the Romans for its durability and the comparative ease with which it could be worked and is a common feature of many of the region’s buildings and monuments. A primary example is the late second-century Roman land walls of London, over three kilometres long, whose fine quality facing blocks are still visible in surviving sections, such as those near Tower Hill underground station. This enterprise alone is a remarkable example of the demand for the material, with modern estimates indicating that over one million squared and dressed ragstone blocks would have been required for the inner and outer facing, together with a rubble ragstone core, which was then set with mortar. A similar vessel to Blackfriars 1 would have needed to have made around 1,750 voyages of 56km each way to transport the 45,000 tonnes of ragstone required for such a massive building programme.

The quarries needed to supply this monumental demand were of a matching scale. While ragstone outcrops are found in the Hythe Beds, the finest quality material lies within the outcrops in the upper Medway valley and these were heavily exploited during the occupation. There are four likely sites for the quarries: at Allington (actually on the tidal reach), Boughton Monchelsea to the south of modern Maidstone, Dean Street (also south of Maidstone and, at 2.5km long, one of the largest man-made features of occupied Britain) and finally at Teston, slightly further upriver. Each of these sites had direct access either to the Medway itself or, in the case of Boughton Monchelsea, to a major tributary, the Loose Stream, notable for its mills. The luxury villas of the associated elite were located in Maidstone, East Farleigh, Barming and Teston, all within easy reach of the quarries. A Roman road ran from the Dean Street quarry to the Roman ford at Barming and to a nearby villa at East Farleigh.

East Wear Bay, at Folkestone, was well known for its quern stone industry, which manufactured high quality Greensand querns from the outcropping in the local cliffs. The success of the industry is evident from the widespread export of the querns made there, examples being found as far afield as Hunsbury in Northamptonshire and possibly in northern France. This particular Greensand was noted for its strength, a quality critical to the quern stone’s grinding power and resistance to wear. It also allowed industrial-sized millstones to be manufactured, for use at high-volume regional water mills, such as that on the River Stour at Ickham, Kent. The archaeological record suggests that the quern stone industry in Folkestone preceded the arrival of the Romans, with evidence of its origins in the later Iron Age. However it is clear that the beginning of the occupation marked a dramatic increase in the scale of such activities and in the ability to transport the manufactured goods to new markets, a hallmark, too, of the Industrial Revolution of the 18th and 19th centuries. Meanwhile other building stone was quarried locally, as the region began its path to Roman urbanisation and fortification. Tufa (volcanic rock), was quarried extensively in the valley of the River Dour above Folkestone. Blocks of the material are found in the walls of the forts of the Classis Britannica, the Roman fleet based in Britain, and also in later Saxon shore forts at Dover and Lympne, the pharos at Dover, settlement buildings in the same town and in the large villa at East Wear Bay. Chalk was also quarried extensively, as was flint. Again, both were used as building materials, while a large ragstone quarry has been located above the Saxon shore fort at Lympne, which supplied the stone for its construction.

Further west the Weald reveals the extensive industrial landscape renowned for iron manufacturing during the occupation. This industry, too, had its origins in the later Iron Age, at sites such as Garden Hill in East Sussex. However it is with the arrival of the Romans that large-scale activity began, especially near the coast of the eastern Weald. Intensive sites such as Beauport Park, Footlands and Oaklands Park began processing huge quantities of locally mined iron ore to produce high quality iron, which was exported around the region and abroad from ports such as Bodiam on the River Rother and Castle Croft on the River Wallers Haven. These major sites were also linked to the Medway valley by the Roman Road that travelled north from Beauport Park, past Footlands and Oaklands Park, through modern Maidstone and then on to Roman Rochester.

Using a ‘direct process’ method, which combined smelting and forging in one procedure, some of the furnaces used during the occupation were larger than any in use again until the coming of the Industrial Revolution proper. Recent estimates indicate that during the 200 years when the Romano-British Wealden iron industry was at its height, based on the current estimate of 100,000 tonnes of slag in the region, the industry produced up to 30,000 tonnes of iron at 113 known sites. The four largest sites produced 44 per cent of the total of this waste volume and were thus by far the largest contributors to overall iron production. The Beauport Park site produced 210 tonnes of iron annually from the first to the third centuries AD.

There was an extensive brick and tile manufacturing industry in the Weald, which made use of the fine quality clays abundant in the region. The industry is heavily associated with the tiles stamped ‘CLBR’, indicating a building belonging to the Classis Britannica, which are found across the region and have been discovered as far afield as Boulogne. The Grey Wealden shale quarried to make finely cut tiles is regularly found within the boundaries of what was Roman London in the form of Opus Sectile tiled floors, a style of illustrative, mosaic-like decoration.

Patterns common to all three of these significant industries are discernible. Kentish ragstone is known to have been used in the first Roman forum in London, built during the AD 50s. It is also found in the Claudian temple in Colchester, constructed sometime before the Boudiccan revolt of AD 43. Meanwhile at least nine of the iron-making sites in the Weald were fully operational by the end of the first century AD, indicating the early beginnings of industry. Although iron manufacturing existed to a limited extent in the Weald before the occupation, there was certainly no ragstone quarrying taking place. It, therefore, seems likely that the Romans had some knowledge before their official arrival of the available resources in the south-east and of their potential for industrial-scale exploitation.

There is a clear chronological distinction between the period of large-scale industry typical of the middle of the third century and the more localised activity which marks the period immediately before the end of the Roman occupation. The use of Kentish ragstone on a grand scale declined during the third century (the later river wall and bastions of London are made of recycled material from public buildings and mausolea rather than the fine ragstone of the earlier land wall). Meanwhile, iron manufacturing in the Weald had also ceased by this time. The Classis Britannica in its earlier, large-scale phase, acting on the authority of the Procurator (the official in charge of a province’s financial affairs), had facilitated the opening up of industrial activity on a large scale, with the emphasis on making the new province pay its way. Across the empire the regional merchant navies had a strong association with the extractive industries (including the Classis Germanica on the River Rhine) and this was certainly the case in the Weald, where many of the larger iron manufacturing sites that have been excavated feature considerable numbers of local CLBR-stamped tiles. The Classis Britannica played a similarly crucial role with the Medway valley’s ragstone quarrying industry, given the need to manage what was a vast business enterprise, including the maritime transport necessary to carry the stone and the building and management of the river infrastructure required. Even the quern industry at East Wear Bay has a Classis Britannica link, evidenced by the plentiful CLBR-stamped tiles found locally (including at the Folkestone villa).

But the Classis Britannica disappears from history in the middle of the third century, its last reference being in an epigraphic testament to one Saturninus, ex-captain in the fleet, dated to no later than AD 249. It is at this time that major changes take place in the three zones, for example, the decline of industrial-scale ragstone quarrying and iron manufacturing described above, as well as in settlement patterns. It is in this context that industrial activity becomes much more localised. This transformation is paralleled by other changes in Britain, for example, in settlement patterns. It is a matter of debate whether such changes from large-scale state-run activity and associated settlement to localism was regionally specific or simply a symptom of the maturing imperial project during a century when huge changes were taking place amid the crisis of the third century, which culminated in the Diocletianic Persecution of Christians throughout the Roman Empire in the late third and early fourth centuries, ending in 313 with the Edict of Milan, passed by Constantine and Licinius.

There were clearly differences between the arrival of industry into Britain during the occupation and the ascendency of industry over agriculture during the Industrial Revolution of the 18th century. Britain’s census of 1851 shows that over half of the economically active population were for the first time employed in industry (determined as manufacturing, mining and construction). One simply cannot say that the Classical economy was dominated by industry, because it was not, though it did play an important role. In that regard, three questions arise: was there a pronounced increase in the scale of industry in Britain with the advent of the occupation? Was there a pronounced increase in the level of engineering innovation at the same time? Could one describe some of the industry as manufacturing? The answer to all three questions is yes. The increase in scale of the industries, such as quarrying and iron manufacturing, was enormous. Further, consider the impact that the 18th-century Industrial Revolution had on the economy and on society and ask if this was replicated earlier, during the Roman occupation. While long-range trading networks have been a feature of human economic activity since the Neolithic period or earlier, nothing had existed in Britain before the Roman occupation to compare with the international economy within which it suddenly found itself. Society in Britain dramatically changed with the advent of the occupation and manpower-intensive industries such as quarrying and iron manufacturing had a major social impact in the regions where they were prominent. Both the Britain of the Roman occupation and that of the Industrial Revolution experienced substantial population growth. In the Roman period this peaked at up to four million, an increase from no higher than two million in the later Iron Age. There is evidence that parts of the country experienced a population crash towards the end of the Iron Age, indicating that pre-Roman population levels were not sustainable. The rapid population growth that followed the occupation is evident in the new towns and cities, the civitas capitals, municipa, coloniae and small towns replacing the far fewer oppida (defensive settlements) which had existed before. While Roman population growth can seem insignificant compared with that associated with the later Industrial Revolution, it is important to acknowledge the scale and rate of change in comparison with what had existed before. For all these reasons one can argue that the arrival of the Romans in Britain marked the onset of an Industrial Revolution which would not be replicated nor surpassed until the 18th century.
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