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Study of the Impact of Ice Formation in Leads upon the Sea Ice Pack Mass Balance Using a New Frazil and Grease Ice Parameterization

机译:使用新的Frazil和油脂冰参数化研究铅中冰的形成对海冰袋质量平衡的影响

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摘要

Leads are cracks in sea ice that often form because of deformation. During winter months, leads expose the ocean to the cold atmosphere, resulting in supercooling and the formation of frazil ice crystals within the mixed layer. Here the authors investigate the role of frazil ice formation in leads on the mass balance of the sea ice pack through the incorporation of a new module into the Los Alamos sea ice model (CICE). The frazil ice module considers an initial cooling of leads followed by a steady-state formation of uniformly distributed single size frazil ice crystals that precipitate to the ocean surface as grease ice. The grease ice is pushed against one of the lead edges by wind and water drag that the authors represent through a variable collection thickness for new sea ice. Simulations of the sea ice cover in the Arctic and Antarctic are performed and compared to a model that treats leads the same as the open ocean. The processes of ice formation in the new module slow down the refreezing of leads, resulting in a longer period of frazil ice production. The fraction of frazil-derived sea ice increases from 10% to 50%, corresponding better to observations. The new module has higher ice formation rates in areas of high ice concentration and thus has a greater impact within multiyear ice than it does in the marginal seas. The thickness of sea ice in the central Arctic increases by over 0.5 m, whereas within the Antarctic it remains unchanged.
机译:铅是由于变形经常形成的海冰裂缝。在冬季,铅将海洋暴露于寒冷的大气中,导致过冷并在混合层内形成巴西冰晶。在这里,作者通过将新模块整合到Los Alamos海冰模型(CICE)中,研究了巴西冰形成在铅中对海冰袋质量平衡的作用。 Frazil冰组件考虑了引线的初始冷却,然后稳定地形成了均匀分布的单一尺寸Frazil冰晶体,这些晶体作为油脂冰沉淀到海洋表面。作者通过风和水的阻力将油脂冰推到其中一个前沿上,作者通过可变厚度收集新的海冰来表示油脂。进行了北极和南极海冰覆盖的模拟,并将其与对待铅的方法与开放海洋相同的模型进行了比较。新模块中的冰形成过程会减缓铅的重新冻结,从而导致更长的巴西冰生产时间。来自巴西的海冰比例从10%增加到50%,与观测结果相对应。新模块在高冰浓度地区具有更高的成冰率,因此与边缘海相比,多年制冰对多年结冰的影响更大。北极中部的海冰厚度增加了0.5 m以上,而南极内部则保持不变。

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  • 来源
    《Journal of Physical Oceanography》 |2015年第8期|2025-2047|共23页
  • 作者单位

    Univ Reading, Dept Meteorol, Ctr Polar Observat & Modelling, Reading RG6 6AH, Berks, England;

    Univ Reading, Dept Meteorol, Ctr Polar Observat & Modelling, Reading RG6 6AH, Berks, England;

    Univ Reading, Dept Meteorol, Ctr Polar Observat & Modelling, Reading RG6 6AH, Berks, England;

    British Antarctic Survey, Cambridge CB3 0ET, England;

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