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Spatiotemporal dependence of Antarctic sea ice variability to dynamic and thermodynamic forcing: a coupled ocean-sea ice model study

机译:南极海冰变化对动力和热力强迫的时空依赖性:海冰耦合模型研究

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摘要

Satellite-derived Antarctic sea ice extent has displayed a slight upward since 1979, but with strong temporal and regional variabilitythe drivers of which are poorly understood. Here, we conduct numerical experiments with a circum-Antarctic ocean-sea ice-ice shelf model driven by realistic atmospheric surface boundary conditions to examine the factors responsible for the temporal and spatial patterns in observed Antarctic sea ice variability. The model successfully reproduces observed seasonal and interannual variability in total sea ice extent and the temporal/spatial patterns of sea ice concentration and seasonality (days of advance and retreat and actual ice days) for 1979-2014. Sensitivity experiments are performed, in which the interannual variability in wind stress or thermodynamic surface forcing is ignored, to delineate their contributions to Antarctic sea ice fields. The results demonstrate that: (1) thermodynamic forcing plays a key role in driving interannual variability in sea ice extent and seasonality in most Antarctic sectors; (2) only in the Ross Sea the wind stress does become the main driver of sea ice extent variability; (3) thermodynamic forcing largely regulates interannual variability in the timing of sea ice advance, while wind stress largely controls the timing of the sea ice retreat; and (4) although both wind stress and thermodynamic forcing contribute to variability in total sea ice volume, the wind stress plays a dominant role in regulating sea ice volume variability in the near-coastal zone.
机译:自1979年以来,来自卫星的南极海冰范围呈略微上升的趋势,但由于时空和区域差异很大,其成因尚不清楚。在这里,我们进行了由实际大气表面边界条件驱动的南极洲环海-海冰冰架模型的数值实验,以检验造成南极海冰变化的时空格局的因素。该模型成功地再现了1979-2014年观测到的总海冰范围的季节性和年际变化以及海冰浓度和季节性的时空分布和季节性(前进和后退天数以及实际冰天)。进行了敏感性实验,其中忽略了风应力或热力学表面强迫的年际变化,以描绘它们对南极海冰场的贡献。结果表明:(1)在大多数南极地区,热力学强迫在推动海冰范围和季节年际变化方面起着关键作用; (2)仅在罗斯海中,风应力确实成为海冰范围变化的主要驱动因素; (3)热力学强迫在很大程度上调节海冰前进时间的年际变化,而风应力在很大程度上控制着海冰退缩的时间; (4)尽管风应力和热力学强迫共同作用于总海冰体积的变化,但风应力在调节近岸海域海冰体积变化中起主要作用。

著录项

  • 来源
    《Climate dynamics》 |2019年第8期|3791-3807|共17页
  • 作者单位

    Japan Agcy Marine Earth Sci & Technol JAMSTEC, Kanazawa Ku, 3173-25 Showa Machi, Yokohama, Kanagawa 2360001, Japan|Univ Tasmania, Antarctic Climate & Ecosyst Res Ctr, Hobart, Tas, Australia;

    Univ Tasmania, Antarctic Climate & Ecosyst Res Ctr, Hobart, Tas, Australia|Univ Tasmania, Inst Marine & Antarctic Studies, Hobart, Tas, Australia;

    Univ Tasmania, Antarctic Climate & Ecosyst Res Ctr, Hobart, Tas, Australia|Australian Antarctic Div, Kingston, Tas, Australia;

    Univ Tasmania, Antarctic Climate & Ecosyst Res Ctr, Hobart, Tas, Australia|Australian Bur Meteorol, Hobart, Tas, Australia;

    Univ Tokyo, Atmosphere & Ocean Res Inst, Kashiwa, Chiba, Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Antarctic sea ice variability; An ocean-sea ice model; Wind stress; Thermodynamic forcing;

    机译:南极海冰变化;海冰模型;风应力;热力学强迫;

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