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Determination of Interannual to Decadal Changes in Ice Sheet Mass Balance from Satellite AltimetryA major uncertainty in predicting sea level rise is the sensitivity of ice sheet mass balance to climate change, as well as the uncertainty in present mass balance. Since the annual water exchange is about 8 mm of global sea level equivalent, the +/- 25% uncertainty in current mass balance corresponds to +/- 2 mm/yr in sea level change. Furthermore, estimates of the sensitivity of the mass balance to temperature change range from perhaps as much as - 10% to + 10% per K. Although the overall ice mass balance and seasonal and inter-annual variations can be derived from time-series of ice surface elevations from satellite altimetry, satellite radar altimeters have been limited in spatial coverage and elevation accuracy. Nevertheless, new data analysis shows mixed patterns of ice elevation increases and decreases that are significant in terms of regional-scale mass balances. In addition, observed seasonal and interannual variations in elevation demonstrate the potential for relating the variability in mass balance to changes in precipitation, temperature, and melting. From 2001, NASA's ICESat laser altimeter mission will provide significantly better elevation accuracy and spatial coverage to 86 deg latitude and to the margins of the ice sheets. During 3 to 5 years of ICESat-1 operation, an estimate of the overall ice sheet mass balance and sea level contribution will be obtained. The importance of continued ice monitoring after the first ICESat is illustrated by the variability in the area of Greenland surface melt observed over 17-years and its correlation with temperature. In addition, measurement of ice sheet changes, along with measurements of sea level change by a series of ocean altimeters, should enable direct detection of ice level and global sea level correlations.
Document ID
20010095499
Acquisition Source
Goddard Space Flight Center
Document Type
Conference Paper
Authors
Zwally, H. Jay
(NASA Goddard Space Flight Center Greenbelt, MD United States)
Busalacchi, Antonioa J.
Date Acquired
August 20, 2013
Publication Date
January 28, 2001
Subject Category
Meteorology And Climatology
Meeting Information
Meeting: Vening Meinesz Sea Level Conference
Location: Sardinia
Country: Italy
Start Date: October 4, 2001
End Date: October 7, 2001
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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