Scientists use lasers to map hidden urban landscape of Jordan’s ancient Jerash

Scientists beamed down lasers on the ancient city of Jerash in Jordan, mapping the site and then comparing it with historic photos to show what remains — and what has been subsumed by the growing modern city.

Scientists use lasers to map hidden urban landscape of Jordan's ancient Jerash
Aerial photographs from 1953 (left) and 2015 (right) show rapid growth in Jerash,
once the site of the ancient city of Gerasa [Credit: PNAS]

Jerash is world famous, and one of the most popular tourist sites in Jordan. It has long streets and a plaza lined with Graeco-Roman columns. The site also boasts two amphitheaters, a hippodrome, temples and churches.

In other words: “Fantastic monumental architecture that’s still largely preserved,” said archeologist David Stott from Aarhus University in Denmark.

Stott was one of the researchers that used laser pulses from an aircraft to create a precise 3D map of the site. The technology known as LiDAR, short for “Light Detection and Ranging,” has revolutionized archaeology by allowing scientists to map large areas with unprecedented speed and accuracy. Recently, scientists using LiDAR discovered 60,000 Maya structures in a forest in northern Guatemala.

The technology is “transformative,” Stott said. The map of Jerash allows researchers to see features of the city that are subtle and more difficult to pick up using other methods. It reveals new clues about the ways the ancient people transported water from nearby rivers and springs.

Scientists use lasers to map hidden urban landscape of Jordan's ancient Jerash
The new study maps the water infrastructure of the ancient city of Gerasa, in Jordan. Possible
aqueducts, channels, springs, and cisterns were identified  and mapped  in relation
to possible areas of water supply [Credit: PNAS]

The map provides evidence for “a complex and sophisticated system of aqueducts and irrigation channels that ran into the city and out of the city,” he added. Here’s what the researchers think the system looked like:

Stott worked with other researchers from Aarhus, the Moesgaard Museum in Denmark and Münster University. They published their findings in the Proceedings of the National Academy of Sciences.

The ancient city is under threat from the modern city of Jerash, which has been growing and has, in places, built over ancient parts. “Within Jerash, about 50 percent of the city has been built over since the 1950s,” Stott said.

To understand what’s been lost, the researchers used a trove of historic photos of the site dating back a century and compared it with the new data. This allowed them to map what has been destroyed, as well as what still stands.

“We’ve used old archival data in conjunction with modern state-of-the-art imaging technology to sort of contextualize the stuff that we can see now,” Stott added. “It’s very clear from the imagery when you look at the photographs just how quickly the city has been growing.”

Scientists use lasers to map hidden urban landscape of Jordan's ancient Jerash
Newly identified archaeological features (grey shading) and previously mapped structures (light blue outlines). The newly
identified features are complex to interpret. The bottom right box shows a probable road network and urban
 subdivisions (bright blue and green lines), along with a large number of subrectangular features
 likely indicative of building foundations [Credit: PNAS]

People have been taking aerial photographs of the site since the First World War, he said. “It really helps to have that bigger picture from the archival images,” he said.

The process of urban encroachment, Stott added, “are happening all over the world and we as archaeologists have a duty to identify what we want to preserve for the future and what we cannot preserve.”

Technologies like this help people trying to protect ancient sites make informed decisions. Stott hopes that by understanding what has been lost, it’ll be easier to preserve what still stands.

Author: Merrit Kennedy | Source: NPR [May 30, 2018]

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