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Acceleration of the contribution of the Greenland and Antarctic ice sheets to sea level rise
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Permanent Link:
http://dpanther.fiu.edu/dpService/dpPurlService/purl/FI15061803/00001
Material Information
Title:
Acceleration of the contribution of the Greenland and Antarctic ice sheets to sea level rise
Series Title:
Geophysical Research Letters Volume 38
Creator:
Rignot, E.
Velicogna, I.
van den Broeke, M.R.
Monaghan, A.
Lenaerts, J.
Publisher:
American Geophysical Union
Publication Date:
2011
Language:
English
Subjects
Subjects / Keywords:
Climate change
( lcsh )
Greenland
( lcsh )
Antarctica
( lcsh )
Ice sheets
( lcsh )
Notes
Abstract:
Ice sheet mass balance estimates have improved substantially in recent years using a variety of techniques, over different time periods, and at various levels of spatial detail. Considerable disparity remains between these estimates due to the inherent uncertainties of each method, the lack of detailed comparison between independent estimates, and the effect of temporal modulations in ice sheet surface mass balance. Here, we present a consistent record of mass balance for the Greenland and Antarctic ice sheets over the past two decades, validated by the comparison of two independent techniques over the last 8 years: one differencing perimeter loss from net accumulation, and one using a dense time series of timevariable gravity. We find excellent agreement between the two techniques for absolute mass loss and acceleration of mass loss. In 2006, the Greenland and Antarctic ice sheets experienced a combined mass loss of 475 ± 158 Gt/yr, equivalent to 1.3 ± 0.4 mm/yr sea level rise. Notably, the acceleration in ice sheet loss over the last 18 years was 21.9 ± 1 Gt/yr2 for Greenland and 14.5 ± 2 Gt/yr2 for Antarctica, for a combined total of 36.3 ± 2 Gt/yr2. This acceleration is 3 times larger than for mountain glaciers and ice caps (12 ± 6 Gt/yr2). If this trend continues, ice sheets will be the dominant contributor to sea level rise in the 21st century.
Record Information
Source Institution:
Florida International University
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Acceleration of the contribution of the Greenland and Antarctic ice sheets to sea level rise
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