Water from melting glaciers is sharply increasing the volume of glacial lakes, according to anew studypublished on 31 August in the journalNature Climate Change(1). The volume of glacial lakes increased by 50 per cent – that is, 50.8 cubic kilometres – in the past 30 years, which is equivalent to the volume of 20 million Olympic-size swimming pools.
Glacial lakes are an important source of freshwater for some of the poorest people in the world. However, most glacial lakes are dammed by ice or loose rock and debris, and water can easily bursting through these unstable barriers. The rapid growth of glacial lakes is therefore increasing the risk of so-called glacial lake outbursts.
This places downstream communities at serious risk of flooding, which can damage infrastructures, such as hydroelectric power plants, pipelines, and essentials roadways, and destroy livestock and farmland. Moreover, floods from glacial lakes have been responsible for tens of thousands of deaths over the last century.
The recent study is the most comprehensive to date in terms of geographic scope. Data were obtained from 250,000 scenes from NASA’s Landsat satellite missions and the Google Earth Engine and analyzed by scientists in Canada, the United States, and the United Kingdom.
”Using these cloud-based big data tools was critical,” said Dr Dan Shugar, an associate professor in the Department of Geoscience, and director of the Environmental Science Program at the University of Tacoma. “We ended up analyzing 254,795 Landsat scenes. A couple of years ago, this project would have been impossible to do on a global scale — there would have been so many terabytes of data that it would have been impossible to download and process all of it”.
Importantly, the study showed the while some meltwater flows into oceans, a substantial amount first feeds into and is retained by glacial lakes, highlighting the growing risk to communities in areas downstream from these growing glacial lakes.
According to another team of the researchers from the University of Leeds, University of Edinburgh, and University College London, the dramatic increase in global ice loss that is contributing to growing glacial lakes could lead to an increase in sea level rise of one metre by the end of the century – which could also have devastating impacts on communities. To put this into context, every centimetre of sea-level rise could displace around one million people living in low-lying areas.
Inthe studypublished last week as a preprint inThe Cryosphere Discussions, the scientists revealed that from 1994 to to 2017, 28 trillion tonnes of ice has disappeared from the surface of the Earth (2). The reported ice loss matchedworst-case-scenario predictionsoutlined by the Intergovernmental Panel on Climate Change (IPCC). The researchers also used satellite surveys, but in this case, to examine ice losses across the entire planet, including glacier regions in South America, Asia, Canada, the Arctic, Antarctica, and Greenland.