Mass balance of the Antarctic ice sheet

Author:

Wingham D.J1,Shepherd A2,Muir A1,Marshall G.J3

Affiliation:

1. Centre for Polar Observation and Modelling, University College LondonGower Street, London WC1E 6BT, UK

2. Centre for Polar Observation and Modelling, Scott Polar Research Institute, University of CambridgeLensfield Road, Cambridge CB2 1ER, UK

3. British Antarctic SurveyHigh Cross, Madingley Road, Cambridge CB3 0ET, UK

Abstract

The Antarctic contribution to sea-level rise has long been uncertain. While regional variability in ice dynamics has been revealed, a picture of mass changes throughout the continental ice sheet is lacking. Here, we use satellite radar altimetry to measure the elevation change of 72% of the grounded ice sheet during the period 1992–2003. Depending on the density of the snow giving rise to the observed elevation fluctuations, the ice sheet mass trend falls in the range −5–+85 Gt yr −1 . We find that data from climate model reanalyses are not able to characterise the contemporary snowfall fluctuation with useful accuracy and our best estimate of the overall mass trend—growth of 27±29 Gt yr −1 —is based on an assessment of the expected snowfall variability. Mass gains from accumulating snow, particularly on the Antarctic Peninsula and within East Antarctica, exceed the ice dynamic mass loss from West Antarctica. The result exacerbates the difficulty of explaining twentieth century sea-level rise.

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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