Currently, about 12 %–13 % of High Mountain Asia’s glacier area is debris-covered, which alters its surface mass balance. However, in regional-scale modelling approaches, debris-covered glaciers are typically treated as clean-ice glaciers, leading to a bias when modelling their future evolution. Here, we present a new approach for modelling debris area and thickness evolution, applicable from single glaciers to the global scale. We derive a parameterization and implement it as a module into the Global Glacier Evolution Model (GloGEMflow), a combined mass-balance ice-flow model. The module is initialized with both glacier-specific observations of the debris' spatial distribution and estimates of debris thickness. These data sets account for ...
Debris-covered glaciers are found in most of the world’s glacierized areas. The presence of debris o...
Supraglacial debris strongly modulates glacier melt rates and can be decisive for ice dynamics and m...
As a direct consequence of climate change, glaciers worldwide are rapidly losing mass. This trend is...
Currently, about 12ĝ€¯%-13ĝ€¯% of High Mountain Asia's glacier area is debris-covered, which alters ...
Currently, about 12ĝ€¯%-13ĝ€¯% of High Mountain Asia's glacier area is debris-covered, which alters ...
Rock debris covers about a third of the total glacier ablation area in High Mountain Asia. Sustained...
Many Himalayan glaciers are characterised in their lower reaches by a rock debris layer. This debris...
Rock debris covers about a third of the total glacier ablation area in High Mountain Asia. Sustained...
Many Himalayan glaciers are characterised in their lower reaches by a rock debris layer. This debris...
Many Himalayan glaciers are characterised in their lower reaches by a rock debris layer. This debris...
Rocky debris on glacier surfaces influences ice melt rates and the response of glaciers to climate c...
Rock debris can accumulate on glacier surfaces and dramatically reduce glacier melt. The structure o...
Rocky debris on glacier surfaces influences ice melt rates and the response of glaciers to climate c...
Debris-covered glaciers are found in most of the world’s glacierized areas. The presence of debris o...
Supraglacial debris affects glacier mass balance as a thin layer enhances surface melting, while a t...
Debris-covered glaciers are found in most of the world’s glacierized areas. The presence of debris o...
Supraglacial debris strongly modulates glacier melt rates and can be decisive for ice dynamics and m...
As a direct consequence of climate change, glaciers worldwide are rapidly losing mass. This trend is...
Currently, about 12ĝ€¯%-13ĝ€¯% of High Mountain Asia's glacier area is debris-covered, which alters ...
Currently, about 12ĝ€¯%-13ĝ€¯% of High Mountain Asia's glacier area is debris-covered, which alters ...
Rock debris covers about a third of the total glacier ablation area in High Mountain Asia. Sustained...
Many Himalayan glaciers are characterised in their lower reaches by a rock debris layer. This debris...
Rock debris covers about a third of the total glacier ablation area in High Mountain Asia. Sustained...
Many Himalayan glaciers are characterised in their lower reaches by a rock debris layer. This debris...
Many Himalayan glaciers are characterised in their lower reaches by a rock debris layer. This debris...
Rocky debris on glacier surfaces influences ice melt rates and the response of glaciers to climate c...
Rock debris can accumulate on glacier surfaces and dramatically reduce glacier melt. The structure o...
Rocky debris on glacier surfaces influences ice melt rates and the response of glaciers to climate c...
Debris-covered glaciers are found in most of the world’s glacierized areas. The presence of debris o...
Supraglacial debris affects glacier mass balance as a thin layer enhances surface melting, while a t...
Debris-covered glaciers are found in most of the world’s glacierized areas. The presence of debris o...
Supraglacial debris strongly modulates glacier melt rates and can be decisive for ice dynamics and m...
As a direct consequence of climate change, glaciers worldwide are rapidly losing mass. This trend is...