Ice and ocean processes in the Bellingshausen Sea, Antarctica

被引:100
|
作者
Holland, Paul R. [1 ]
Jenkins, Adrian [1 ]
Holland, David M. [2 ]
机构
[1] British Antarctic Survey, Cambridge CB3 0ET, England
[2] NYU, Courant Inst Math Sci, New York, NY 10012 USA
关键词
PENINSULA CONTINENTAL-SHELF; SOUTHERN-HEMISPHERE; SPATIAL VARIABILITY; CLIMATE VARIABILITY; MASS-BALANCE; MODEL; CIRCULATION; WEST; THICKNESS; TRENDS;
D O I
10.1029/2008JC005219
中图分类号
P7 [海洋学];
学科分类号
0707 ;
摘要
In the vicinity of the Antarctic Peninsula observations show diminishing sea ice and a rapid warming of atmosphere and ocean. These changes have led to the collapse of ice shelves and retreat, acceleration, and thinning of inland ice. However, ocean observations in the center of the nearby Bellingshausen Sea are spatially and temporally coarse. In this study, ocean and sea ice models forced by atmospheric reanalyses are used to investigate this data gap by simulating processes in the Bellingshausen Sea for the years 1979-2007. The model suggests flow features in the region and predicts the basal melting of local ice shelves. Modeled ocean conditions are found to be less variable than in the nearby Amundsen Sea, which is situated closer to foci of annual and interannual atmospheric variability. Melt rates beneath George VI Ice Shelf are investigated in detail, concluding that the ice shelf may have been melting out of balance (and therefore thinning) for decades. The melt rate contains significant interannual variability that the model links to variation in sea ice conditions offshore of the southern end of the ice shelf. This stands in contrast to the Amundsen Sea, where models suggest that ice shelf melting is controlled by variable transport of Circumpolar Deep Water onto the continental shelf.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] Bellingshausen Sea ice extent recorded in an Antarctic Peninsula ice core
    Porter, Stacy E.
    Parkinson, Claire L.
    Mosley-Thompson, Ellen
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2016, 121 (23) : 13886 - 13900
  • [22] Validation of ECMWF sea level pressure analyses over the Bellingshausen Sea, Antarctica
    King, JC
    [J]. WEATHER AND FORECASTING, 2003, 18 (03) : 536 - 540
  • [23] Ice-Shelf Meltwater Overturning in the Bellingshausen Sea
    Ruan, Xiaozhou
    Speer, Kevin G.
    Thompson, Andrew F.
    Chretien, Lena M. Schulze
    Shoosmith, Deborah R.
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-OCEANS, 2021, 126 (05)
  • [24] Abundance and distribution of invertebrate larvae in the Bellingshausen Sea (West Antarctica)
    Ameneiro, J.
    Mourino-Carballido, B.
    Parapar, J.
    Vazquez, E.
    [J]. POLAR BIOLOGY, 2012, 35 (09) : 1359 - 1373
  • [25] Environmental control on the structure of echinoid assemblages in the Bellingshausen Sea (Antarctica)
    Francina Moya
    Thomas Saucède
    M. Eugenia Manjón-Cabeza
    [J]. Polar Biology, 2012, 35 : 1343 - 1357
  • [26] Environmental control on the structure of echinoid assemblages in the Bellingshausen Sea (Antarctica)
    Moya, Francina
    Saucede, Thomas
    Eugenia Manjon-Cabeza, M.
    [J]. POLAR BIOLOGY, 2012, 35 (09) : 1343 - 1357
  • [27] Abundance and distribution of invertebrate larvae in the Bellingshausen Sea (West Antarctica)
    J. Ameneiro
    B. Mouriño-Carballido
    J. Parapar
    E. Vázquez
    [J]. Polar Biology, 2012, 35 : 1359 - 1373
  • [28] Ocean heat flux under Antarctic sea ice in the Bellingshausen and Amundsen Seas: two case studies
    Ackley, Stephen F.
    Xie, Hongjie
    Tichenor, Elizabeth A.
    [J]. ANNALS OF GLACIOLOGY, 2015, 56 (69) : 200 - 210
  • [29] Extreme intra-seasonal anomalies in the Amundsen and Bellingshausen sea-ice area, Antarctica, during the austral winter
    Furtado de Lima, Fabio Ullmann
    Vespoli de Carvalho, Leila M.
    [J]. ANNALS OF GLACIOLOGY, VOL 48, 2008, 48 : 58 - 64
  • [30] Abbot Ice Shelf, structure of the Amundsen Sea continental margin and the southern boundary of the Bellingshausen Plate seaward of West Antarctica
    Cochran, James R.
    Tinto, Kirsty J.
    Bell, Robin E.
    [J]. GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, 2015, 16 (05) : 1421 - 1438