Showing posts with label lidar. Show all posts
Showing posts with label lidar. Show all posts

Wednesday, June 19, 2013

'Lidar' Uncovers Mayan City in Mexico

'Lidar' in the news again -- this time, aiding the discovery of unexplored Mayan ruins in Mexico.

From The Latin American Herald Tribune
Caracas,
Wednesday
June 19,2013

Vast Mayan City Discovered in Southeast Mexico Jungle

MEXICO CITY – Archaeologists have discovered a previously unknown Mayan city in the southeastern state of Campeche, which for its vast extension and characteristics is believed to have been a seat of government some 1,400 years ago, Mexico’s National Institute of Anthropology and History, or INAH, said.

A team of experts headed by Slovenian archaeologist Ivan Sprajc has christened the site Chactun.

“It is one of the largest sites in the Central Lowlands, comparable in its extent and the magnitude of its buildings with Becan, Nadzcaan and El Palmar in Campeche”, Sprajc said in a statement released by INAH.

The complex covers more than 22 hectares (54 acres).

Based on the number of monuments, at least ten of them with inscriptions, the city is believed to have been the seat of government for a extensive area during the period of 600-900 A.D., the researcher said.

The INAH-backed exploration is financed by the National Geographic Society and two private companies: Austria’s Villas and Slovenia’s Ars Longa.

Down through the centuries, Chactun remained hidden in the jungle on the north of the Calakmul Biosphere Reserve. According to Sprajc, it forms part of an area covering more than 3,000 sq. meters (1,150 sq. miles) that has remained a “total blank” on the Mayan archaeological map.

The millennial metropolis is one of the nearly 80 sites detected by the Southeast Campeche Archaeological Recognition Project, launched in 1996. EFE

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At Archaeology Magazine
June 19, 2013

Maya City Discovered in Mexico

CAMPECHE, MEXICO—A large Maya city dubbed ChactĂșn, or Red Stone, has been discovered in the jungles of Mexico’s Central Lowlands, in an area once used by loggers, but only recently explored by archaeologists equipped with aerial photographs and images created with LIDAR. The size of the city and its pyramids, palaces, ball courts, and plazas suggest that it was a long-term seat of government some 1,400 years ago. “It is one of the largest sites in the Central Lowlands, comparable in its extent and the magnitude of its buildings with Becan, Nadzcaan, and El Palmar in Campeche,” explained Slovenian archaeologist Ivan Sprajc. The name of a ruler, K’inich B’ahlam, has been found carved on one of the ten stelae unearthed so far at the site. Archaeologists suspect that ChactĂșn will help them understand the relationships between other nearby Maya cities.

Tuesday, June 18, 2013

Latest Technology Helps Uncover Lost City Covered by Jungle

This is cool - "lidar."  There are a lot of articles about this discovery, I selected this one.

This video, by Damien Evans of Sydney University, shows some of the on-land treks into the area revealed by the "lidar" data -- it's absolutely fascinating and worth watching -- a little less than 10 minutes long, so lots of information:




Archaeologists Discover “Lost City” in Cambodian Jungle

By Sarah Pruitt

For more than a millennium, its temples, canals, roads and statues remained buried under dense jungle undergrowth in the mountainous Phnom Kulen region of northwestern Cambodia. Now, a team led by archaeologist Damien Evans of Sydney University has used the airborne light-scanning technology known as Lidar to unearth the ancient city of Mahendraparvata, thought to be around 1,200 years old. Part of the Hindu-Buddhist Khmer Empire that ruled much of Southeast Asia from about A.D. 800 to 1400, the city lies some 25 miles west of the famous 12th-century Hindu temple complex of Angkor Wat, and appears to predate it by some 350 years.

The area around the mountain known as Phnom Kulen has been revered as a holy place for centuries, welcoming thousands of pilgrims seeking to bathe and perform spiritual rites there. In the 1970s, the region was a stronghold of the Khmer Rouge, the radical communist regime that tried to revive the agricultural glory of the Angkor era to disastrous effect, including the deaths of more than 1 million people from overwork or starvation and the execution of hundreds of thousands more. Land mines continue to litter the region, making exploration and excavation of the region difficult and dangerous.

As reported by the Sydney Morning Herald on June 15, Evans and his small team of archaeologists found the outline of the ancient city confirmed to be Mahendraparvata by making a detailed map of the area using Lidar laser-scanning technology. In 2009, Lidar technology was used to reveal terraced farming systems and roads in the ancient Maya city of Caracol in Belize, Central America. It was also used at Stonehenge and other archaeological sites in Europe, but had never before been used for archaeological work in tropical Asia. To conduct their project, the University of Sydney team had to seek high-level clearance from the Cambodian government in Phnom Penh.

Evans and his team strapped the scanning equipment to helicopters, which then flew at an altitude of 800 meters and methodically criss-crossed 370 square kilometers of northwest Cambodia, collecting billions of data points and about 5,000 digital aerial photographs. Lidar technology works by firing laser impulses at the landscape, after which a sensor measures how long it takes each pulse to bounce back. Through repetition, the measurements create a detailed picture of the landscape.

Several weeks ago, Evans and his team noticed something unusual: the laser imagery showed a landscape that was completely clear of vegetation. When they went to confirm the Lidar findings, they found the ruins of six previously unrecorded temples, as well as ancient canals, dykes and roads. Subsequent searches revealed another two dozen hidden temple sites. A number of the temples had been looted, but at least two were intact. In addition, the team found a cave with historically revealing carvings, used by holy hermits who flourished during the Angkor period. The light-scanning data also revealed hundreds of mysterious earth-covered mounds, measuring several meters high, scattered across the city; these could be tombs for the dead, although that hypothesis is still unconfirmed.

A one-legged guide named Heng Heap joined Evans on the arduous jungle expedition, along with a reporter and photographer from Fairfax Media. Heng Heap, a former Khmer Rouge soldier, was able to guide the team through dense growth and avoid land mines scattered over landscape he knows intimately. His own village, Anglong Thom, lies in the middle of the “lost city,” and he had been aware of some of its structures, but not all. The upcoming excavation of Mahendraparvata is expected to provide work—in the form of clearing vegetation and preserving historical sites—for local villagers, many of whom are undernourished.

It is not known yet quite how big the city was, as the Lidar search covered only a circumscribed area, and Evans told reporters that “there is a lot of work to be done to discover the extent of this civilization.” Archaeological research—including analysis of sculptured caves and river beds—indicates that the region encompassing the lost city remained occupied throughout the Angkor period (between the ninth and 16th centuries). Angkor Wat, the temple complex constructed in the 12th century by the Khmer ruler Suryavarman II, was first “discovered” by Westerners in the 1860s, but had been used by local peoples for religious purposes for centuries before that. It has been named a UNESCO World Heritage Site and one of the Seven Wonders of the Ancient World.

Reflecting on possible reasons for Mahendraparvata’s demise, Evans suggested that the “severe environmental impact of deforestation and the dependence on water management” may have led to its downfall, as the city may have become “too successful to the point of becoming unmanageable.” [Hey China - hint hint...]

Wednesday, May 12, 2010

New Laser Mapping Technique Reveals Amazing Things

From The New York Times:

Mapping Ancient Civilization, in a Matter of Days
By JOHN NOBLE WILFORD
Published: May 10, 2010

For a quarter of a century, two archaeologists and their team slogged through wild tropical vegetation to investigate and map the remains of one of the largest Maya cities, in Central America. Slow, sweaty hacking with machetes seemed to be the only way to discover the breadth of an ancient urban landscape now hidden beneath a dense forest canopy.

Even the new remote-sensing technologies, so effective in recent decades at surveying other archaeological sites, were no help. Imaging radar and multispectral surveys by air and from space could not “see” through the trees.

Then, in the dry spring season a year ago, the husband-and-wife team of Arlen F. Chase and Diane Z. Chase tried a new approach using airborne laser signals that penetrate the jungle cover and are reflected from the ground below. They yielded 3-D images of the site of ancient Caracol, in Belize, one of the great cities of the Maya lowlands.

In only four days, a twin-engine aircraft equipped with an advanced version of lidar (light detection and ranging) flew back and forth over the jungle and collected data surpassing the results of two and a half decades of on-the-ground mapping, the archaeologists said. After three weeks of laboratory processing, the almost 10 hours of laser measurements showed topographic detail over an area of 80 square miles, notably settlement patterns of grand architecture and modest house mounds, roadways and agricultural terraces.

“We were blown away,” Dr. Diane Chase said recently, recalling their first examination of the images. “We believe that lidar will help transform Maya archaeology much in the same way that radiocarbon dating did in the 1950s and interpretations of Maya hieroglyphs did in the 1980s and ’90s.”

The Chases, who are professors of anthropology at the University of Central Florida in Orlando, had determined from earlier surveys that Caracol extended over a wide area in its heyday, between A.D. 550 and 900. From a ceremonial center of palaces and broad plazas, it stretched out to industrial zones and poor neighborhoods and beyond to suburbs of substantial houses, markets and terraced fields and reservoirs.

This picture of urban sprawl led the Chases to estimate the city’s population at its peak at more than 115,000. But some archaeologists doubted the evidence warranted such expansive interpretations.

“Now we have a totality of data and see the entire landscape,” Dr. Arlen Chase said of the laser findings. “We know the size of the site, its boundaries, and this confirms our population estimates, and we see all this terracing and begin to know how the people fed themselves.”

The Caracol survey was the first application of the advanced laser technology on such a large archaeological site. Several journal articles describe the use of lidar in the vicinity of Stonehenge in England and elsewhere at an Iron Age fort and American plantation sites. Only last year, Sarah H. Parcak of the University of Alabama at Birmingham predicted, “Lidar imagery will have much to offer the archaeology of the rain forest regions.”

The Chases said they had been unaware of Dr. Parcak’s assessment, in her book “Satellite Remote Sensing for Archaeology” (Routledge, 2009), when they embarked on the Caracol survey. They acted on the recommendation of a Central Florida colleague, John F. Weishampel, a biologist who had for years used airborne laser sensors to study forests and other vegetation.

Dr. Weishampel arranged for the primary financing of the project from the little-known space archaeology program of the National Aeronautics and Space Administration. The flights were conducted by the National Science Foundation’s National Center for Airborne Laser Mapping, operated by the University of Florida and the University of California, Berkeley.

Other archaeologists, who were not involved in the research but were familiar with the results, said the technology should be a boon to explorations, especially ones in the tropics, with its heavily overgrown vegetation, including pre-Columbian sites throughout Mexico and Central America. But they emphasized that it would not obviate the need to follow up with traditional mapping to establish “ground truth.”

Jeremy A. Sabloff, a former director of the University of Pennsylvania Museum of Archaeology and Anthropology and now president of the Santa Fe Institute in New Mexico, said he wished he had had lidar when he was working in the Maya ruins at Sayil, in Mexico.

The new laser technology, Dr. Sabloff said, “would definitely have speeded up our mapping, given us more details and would have enabled us to refine our research questions and hypotheses much earlier in our field program than was possible in the 1980s.”

At first, Payson D. Sheets, a University of Colorado archaeologist, was not impressed with lidar. A NASA aircraft tested the laser system over his research area in Costa Rica, he said, “but when I saw it recorded the water in a lake sloping at 14 degrees, I did not use it again.”

Now, after examining the imagery from Caracol, Dr. Sheets said he planned to try lidar, with its improved technology, again. “I was stunned by the crisp precision and fine-grained resolution,” he said.

“Finally, we have a nondestructive and rapid means of documenting the present ground surface through heavy vegetation cover,” Dr. Sheets said, adding, “One can easily imagine, given the Caracol success, how important this would be in Southeast Asia, with the Khmer civilization at places like Angkor Wat.”

In recent reports at meetings of Mayanists and in interviews, the Chases noted that previous remote-sensing techniques focused more on the discovery of archaeological sites than on the detailed imaging of on-ground remains. The sensors could not see through much of the forest to resolve just how big the ancient cities had been. As a consequence, archaeologists may have underestimated the scope of Mayan accomplishments.

Rest of article.
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