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Caterpillar-like ice motion in the ablation zone of the Greenland ice sheet

Authors :
Martin Funk
Matthew J. Hoffman
Lauren C. Andrews
Claudia Ryser
Robert L. Hawley
Martin P. Lüthi
Thomas Neumann
Ginny A. Catania
Source :
Journal of Geophysical Research: Earth Surface. 119:2258-2271
Publication Year :
2014
Publisher :
American Geophysical Union (AGU), 2014.

Abstract

Current understanding of ice dynamics predicts that increasing availability and variability of meltwater will have an impact on basal motion and therefore on the evolution and future behavior of the Greenland ice sheet. We present measurements of ice deformation, subglacial water pressure, and surface velocity that show periodic and episodic variations on several time scales (seasonal, multiday, and diurnal). These variations, observed with GPS and sensors at different depths throughout the ice column, are not synchronous but show delayed responses of ice deformation with increasing depth and basal water pressure in antiphase with surface velocity. With the help of a Full-Stokes ice flow model, these observations are explained as ice motion in a caterpillar-like fashion. Caused by patches of different basal slipperiness, horizontal stress transfer through the stiff central part of the ice body leads to spatially varying surface velocities and ice deformation patterns. Variation of this basal slipperiness induces characteristic patterns of ice deformation variability that explain the observed behavior. Ice flow in the ablation zone of the Greenland ice sheet is therefore controlled by activation of basal patches by varying slipperiness in the course of a melt season, leading to caterpillar-like ice motion superposed on the classical shear deformation.

Details

ISSN :
21699003
Volume :
119
Database :
OpenAIRE
Journal :
Journal of Geophysical Research: Earth Surface
Accession number :
edsair.doi...........29dcd61a6dee6602bf71c82559c825f7
Full Text :
https://doi.org/10.1002/2013jf003067