Categories: Cryosphere Capsules

Increased Warming, Melting Destabilizes Glacier Lakes in Mountain Regions Worldwide

Nature, 15 February 2023

Glacial lake outburst floods (GLOFs) now occur at higher altitudes and six weeks earlier than they did a century ago; their declining volume provides a clear message that worldwide glaciers are disappearing at an alarming rate. GLOFs release an outpouring of meltwater that can travel hundreds of kilometers, raising local river levels by several meters and triggering landslides that destabilize surrounding hilltops. This study consolidates more than one hundred years of data to understand long-term trends in GLOFs across six major mountain regions. They found that glaciers in the Himalayas and European Alps can now produce massive floods even at the highest elevations, which were previously stabilized by snowfall and cooler temperatures. Glacier lakes form in “ablation” zones, traditionally low-altitude areas of a glacier where ice loss dominates. Over the past century, rising global temperatures have expanded these ablation zones to encompass entire glaciers at high altitudes, increasing the formation of meltwater pools at unprecedented heights. The instability of these lakes worsens as the ice thins and temperatures rise.

The ice dams restraining glacier lakes in High Mountain Asia now burst open eleven weeks earlier than they did in 1900, followed by the European Alps at ten weeks and northwestern North America at seven weeks earlier. Under a mid to high emission scenario, authors predict that GLOFs will diminish, and by 2100 eventually disappear with the glaciers themselves in regions such as the European Alps, Scandinavia, and British Columbia. Other regions with larger glaciers, such as Patagonia and Alaska, will likely endure intense high elevation GLOFs as new high-altitude areas begin losing ice, endangering downstream communities. This study underscores the importance of reducing emissions to preserve these delicate ice-covered mountain regions across the world, and emphasizes the need for monitoring high-risk regions to better anticipate flooding and reduce damage to local infrastructure, farmland, and transportation systems.

https://www.nature.com/articles/s41586-022-05642-9

Pam Pearson

Recent Posts

Fractures in West Antarctic Ice Shelves Could Increase Future Sea-level Rise by Fourfold

PNAS, 6 July 2026 Antarctic ice shelves act as natural barriers that slow the flow…

5 days ago

Sea-level Rise Has Quadrupled the Frequency of Coastal Flooding Extremes Since 1900

Nature Climate Change, 10 June 2026 Human-driven sea-level rise is transforming once-rare “extreme sea-level events”…

5 days ago

Shifting Cyclones May Reduce Antarctica’s Natural Snowfall Buffer Against Ice Loss

Advances in Climate Change Research, June 2026 Extratropical cyclones – large weather systems that transport…

5 days ago

Marine Heatwaves Becoming More Frequent in the North Sea

Ocean Science, 30 June 2026 The North Sea has warmed about twice as fast as…

5 days ago

Declining West Himalayan Glaciers Result in Decreased Water Supply Should Warming Continue

Environmental Research Climate, 3 July 2026 Glaciers in the Western Himalayas store vast freshwater reserves…

5 days ago

Arctic Sea Ice Loss Linked to Heavier Rainfall in Northwest India

Climate Dynamics, 28 May 2026 Declining sea ice in the Arctic’s Barents-Kara Sea may be…

5 days ago