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Simulating mountain glacier dynamics with the Community Ice Sheet Model

Urheber*innen

Minallah,  Samar
IUGG 2023, General Assemblies, 1 General, International Union of Geodesy and Geophysics (IUGG), External Organizations;

Lipscomb,  William
IUGG 2023, General Assemblies, 1 General, International Union of Geodesy and Geophysics (IUGG), External Organizations;

Leguy,  Gunter
IUGG 2023, General Assemblies, 1 General, International Union of Geodesy and Geophysics (IUGG), External Organizations;

Zekollari,  Harry
IUGG 2023, General Assemblies, 1 General, International Union of Geodesy and Geophysics (IUGG), External Organizations;

Maussion,  Fabien
IUGG 2023, General Assemblies, 1 General, International Union of Geodesy and Geophysics (IUGG), External Organizations;

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Zitation

Minallah, S., Lipscomb, W., Leguy, G., Zekollari, H., Maussion, F. (2023): Simulating mountain glacier dynamics with the Community Ice Sheet Model, XXVIII General Assembly of the International Union of Geodesy and Geophysics (IUGG) (Berlin 2023).
https://doi.org/10.57757/IUGG23-1031


Zitierlink: https://gfzpublic.gfz-potsdam.de/pubman/item/item_5018232
Zusammenfassung
Simulating glacial mass changes and ice dynamics within Earth System Models (ESMs) is challenging due to their small size, sheer number, and spatial discontinuities in the ground ice coverage. This has resulted in a knowledge and representational gap in simulating glacier dynamics in ESMs, while there is a need for scaling ESMs from global to regional scales for comprehensive hydroclimatic assessments.We have implemented a new modeling framework for simulating the dynamic evolution of mountain glaciers within the Community Ice Sheet Model (CISM), the ice dynamics component of the Community Earth System Model (CESM), which presently simulates polar ice sheets. We will describe this framework and the associated challenges and share the results from 200-m CISM simulations over the high-mountain Asia domain with higher-order ice-flow dynamics under the GlacierMIP3 protocols.