Constraining the recent mass balance of Pine Island and Thwaites glaciers, West Antarctica, with airborne observations of snow accumulation

被引:95
作者
Medley, B. [1 ,2 ]
Joughin, I. [2 ]
Smith, B. E. [2 ]
Das, S. B. [3 ]
Steig, E. J. [1 ,4 ]
Conway, H. [1 ]
Gogineni, S. [5 ]
Lewis, C. [5 ]
Criscitiello, A. S. [3 ,6 ]
McConnell, J. R. [7 ]
van den Broeke, M. R. [8 ]
Lenaerts, J. T. M. [8 ]
Bromwich, D. H. [9 ,10 ]
Nicolas, J. P. [9 ,10 ]
Leuschen, C. [5 ]
机构
[1] Univ Washington, Seattle, WA 98195 USA
[2] Univ Washington, Appl Phys Lab, Polar Sci Ctr, Seattle, WA 98105 USA
[3] Woods Hole Oceanog Inst, Woods Hole, MA 02543 USA
[4] Univ Washington, Quaternary Res Ctr, Seattle, WA 98195 USA
[5] Univ Kansas, Ctr Remote Sensing Ice Sheets, Lawrence, KS 66045 USA
[6] Woods Hole Oceanog Inst, MIT WHOI Joint Program Oceanog Appl Ocean Sci & E, Woods Hole, MA 02543 USA
[7] Nevada Syst Higher Educ, Desert Res Inst, Reno, NV USA
[8] Univ Utrecht, Inst Marine & Atmospher Res Utrecht, Utrecht, Netherlands
[9] Ohio State Univ, Byrd Polar Res Ctr, Polar Meteorol Grp, Columbus, OH 43210 USA
[10] Ohio State Univ, Dept Geog, Atmospher Sci Program, Columbus, OH 43210 USA
关键词
DRONNING-MAUD-LAND; EAST ANTARCTICA; SPATIAL-DISTRIBUTION; DOME FUJI; ICE; RADAR; CLIMATE; RATES; VARIABILITY; RETREAT;
D O I
10.5194/tc-8-1375-2014
中图分类号
P9 [自然地理学];
学科分类号
0705 ; 070501 ;
摘要
In Antarctica, uncertainties in mass input and output translate directly into uncertainty in glacier mass balance and thus in sea level impact. While remotely sensed observations of ice velocity and thickness over the major outlet glaciers have improved our understanding of ice loss to the ocean, snow accumulation over the vast Antarctic interior remains largely unmeasured. Here, we show that an airborne radar system, combined with ice-core glaciochemical analysis, provide the means necessary to measure the accumulation rate at the catchment-scale along the Amundsen Sea coast of West Antarctica. We used along-track radar-derived accumulation to generate a 1985-2009 average accumulation grid that resolves moderate-to large-scale features (> 25 km) over the Pine Island-Thwaites glacier drainage system. Comparisons with estimates from atmospheric models and gridded climatologies generally show our results as having less accumulation in the lower-elevation coastal zone but greater accumulation in the interior. Ice discharge, measured over discrete time intervals between 1994 and 2012, combined with our catchment-wide accumulation rates pro-vide an 18-year mass balance history for the sector. While Thwaites Glacier lost the most ice in the mid-1990s, Pine Island Glacier's losses increased substantially by 2006, overtaking Thwaites as the largest regional contributor to sealevel rise. The trend of increasing discharge both glaciers, however, appears to have leveled off since 2008.
引用
收藏
页码:1375 / 1392
页数:18
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