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Nepal floods highlight growing glacier risks in warming Himalayas

The deadly flash flood in Nepal on Wednesday was likely caused by a huge chunk of a glacier that broke off and temporarily dammed a river, according to preliminary investigations by scientists. That may have led to the backed-up water surging downstream with enormous force a few hours later, they suggested.

Nepal floods highlight growing glacier risks in warming Himalayas

On Wednesday, a devastating flash flood struck Nepal, likely caused by a massive chunk of a glacier breaking off and temporarily blocking a river. This may have led to the water surging downstream with immense force hours later, as preliminary investigations suggest. At least 353 people were killed and over 1,300 people remain missing, including foreigners and pilgrims. Scientists are still gathering data to determine the exact cause of the disaster.

Experts, including geoscientist Jakob Steiner, have observed a significant section of the glacier has detached, likening it to a knife cut through the lower part of the glacier. Such a massive drop of glacial ice could have resulted in a catastrophic explosion, causing the chaos that followed. While scientists are cautious about drawing a direct link between global warming and this specific flood, they acknowledge that rising temperatures are altering the Himalayan region, particularly the Hindu Kush Himalaya, which is warming faster than many other areas.

The melting glaciers and changing landscape in this region have led to an increase in the risk of such disasters. Between 2000 and 2019, glaciers in the area lost 267 gigatons of ice annually, equivalent to the mass of 46,500 Great Pyramids of Giza. By 2100, up to 50% of all glaciers in this area could melt, even if global warming is limited to 1.5 degrees Celsius.

The rapid melting of glaciers and permafrost can weaken mountain slopes and rock faces, leading to avalanches and debris flows. In Nepal, the affected valley hosts about 10% of the country's power production capacity. Scientists argue that stronger early warning systems and improved monitoring are essential to mitigate the risks posed by these cascading hazards.

Written by urgent.news from Phys.org's reporting — not their text. Machine-written — may contain errors; check the original before relying on it.

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