the Creative Commons Attribution 4.0 License.
the Creative Commons Attribution 4.0 License.
Insights into supraglacial lake drainage dynamics: triangular fracture formation, reactivation and long-lasting englacial features
Veit Helm
Ole Zeising
Niklas Neckel
Matthias H. Braun
Shfaqat Abbas Khan
Martin Rückamp
Holger Steeb
Julia Sohn
Matthias Bohnen
Ralf Müller
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We construct a mathematical model to describe the formation of lakes on the Greenland Ice Sheet across multiple years. The model represents the dynamics of ice, snow, and surface water, accounting for the influence of air temperature. Our results indicate that lakes can enhance ice melt by absorbing sunlight, thereby accelerating the loss of Greenland ice under realistic scenarios of temperature increase.
We construct a mathematical model to describe the formation of lakes on the Greenland Ice Sheet across multiple years. The model represents the dynamics of ice, snow, and surface water, accounting for the influence of air temperature. Our results indicate that lakes can enhance ice melt by absorbing sunlight, thereby accelerating the loss of Greenland ice under realistic scenarios of temperature increase.