Decay of the Greenland Ice Sheet due to surface-meltwater-induced acceleration of basal sliding

Simulations of the Greenland Ice Sheet are carried out with a high-resolution version of the ice-sheet model SICOPOLIS for several global-warming scenarios for the period 1990-2350. In particular, the impact of surface-meltwater-induced acceleration of basal sliding on the stability of the ice sheet...

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Bibliographic Details
Main Authors: Greve, Ralf, Sugiyama, Shin
Format: Report
Language:unknown
Published: arXiv 2009
Subjects:
Online Access:https://dx.doi.org/10.48550/arxiv.0905.2027
https://arxiv.org/abs/0905.2027
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Summary:Simulations of the Greenland Ice Sheet are carried out with a high-resolution version of the ice-sheet model SICOPOLIS for several global-warming scenarios for the period 1990-2350. In particular, the impact of surface-meltwater-induced acceleration of basal sliding on the stability of the ice sheet is investigated. A parameterization for the acceleration effect is developed for which modelled and measured mass losses of the ice sheet in the early 21st century agree well. The main findings of the simulations are: (i) the ice sheet is generally very susceptible to global warming on time-scales of centuries, (ii) surface-meltwater-induced acceleration of basal sliding leads to a pronounced speed-up of ice streams and outlet glaciers, and (iii) this ice-dynamical effect accelerates the decay of the Greenland Ice Sheet as a whole significantly, but not catastrophically, in the 21st century and beyond. : 9 pages, 3 figures, 1 table