Nonlinear interaction between ocean tides and the Larsen C Ice Shelf system

We report on three GPS records of flow of the Larsen C Ice Shelf, spanning 2 months to 2 years. Variations in speed are evident at periods from a few hours to similar to 182 days, including semi-diurnal, diurnal and similar to 14.76 days. At fortnightly periods the ice shelf varies by +/- 10% from i...

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Bibliographic Details
Published in:Geophysical Research Letters
Main Authors: King, Matt A., Makinson, Keith, Gudmundsson, G. Hilmar
Format: Article in Journal/Newspaper
Language:English
Published: American Geophysical Union 2011
Subjects:
Online Access:http://nora.nerc.ac.uk/id/eprint/14491/
https://nora.nerc.ac.uk/id/eprint/14491/1/grl27879.pdf
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Summary:We report on three GPS records of flow of the Larsen C Ice Shelf, spanning 2 months to 2 years. Variations in speed are evident at periods from a few hours to similar to 182 days, including semi-diurnal, diurnal and similar to 14.76 days. At fortnightly periods the ice shelf varies by +/- 10% from its long-term speed but at diurnal timescales it is up to +/- 100%. A nonlinear relationship between ocean tides and velocity is required to explain the observed variations in flow. As an initial examination we model flow as a non-linear function of basal shear stress including tidal perturbations in the ice shelf grounding zone and show that the major features of the observations are reproduced, notably the long-period signal largely absent from the vertical tidal signal. Alternative explanations are discussed. These observations demonstrate that the ice shelf system is highly sensitive to relatively modest changes in forcing at its boundaries.