Title of article :
Accelerated West Antarctic ice mass loss continues to outpace East Antarctic gains
Author/Authors :
Harig، نويسنده , , Christopher and Simons، نويسنده , , Frederik J.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2015
Pages :
8
From page :
134
To page :
141
Abstract :
While multiple data sources have confirmed that Antarctica is losing ice at an accelerating rate, different measurement techniques estimate the details of its geographically highly variable mass balance with different levels of accuracy, spatio-temporal resolution, and coverage. Some scope remains for methodological improvements using a single data type. In this study we report our progress in increasing the accuracy and spatial resolution of time-variable gravimetry from the Gravity Recovery and Climate Experiment (GRACE). We determine the geographic pattern of ice mass change in Antarctica between January 2003 and June 2014, accounting for glacio-isostatic adjustment (GIA) using the IJ05_R2 model. Expressing the unknown signal in a sparse Slepian basis constructed by optimization to prevent leakage out of the regions of interest, we use robust signal processing and statistical estimation methods. Applying those to the latest time series of monthly GRACE solutions we map Antarcticaʹs mass loss in space and time as well as can be recovered from satellite gravity alone. Ignoring GIA model uncertainty, over the period 2003–2014, West Antarctica has been losing ice mass at a rate of − 121 ± 8   Gt / yr and has experienced large acceleration of ice mass losses along the Amundsen Sea coast of − 18 ± 5   Gt / yr 2 , doubling the mass loss rate in the past six years. The Antarctic Peninsula shows slightly accelerating ice mass loss, with larger accelerated losses in the southern half of the Peninsula. Ice mass gains due to snowfall in Dronning Maud Land have continued to add about half the amount of West Antarcticaʹs loss back onto the continent over the last decade. We estimate the overall mass losses from Antarctica since January 2003 at − 92 ± 10   Gt / yr .
Keywords :
Antarctica , satellite measurements , climate , Time-variable gravity
Journal title :
Earth and Planetary Science Letters
Serial Year :
2015
Journal title :
Earth and Planetary Science Letters
Record number :
2333266
Link To Document :
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