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首页> 外文期刊>Oceanographic Literature Review >Modeling of the Influence of Sea Ice Cycle and Langmuir Circulation on the Upper Ocean Mixed Layer Depth and Freshwater Distribution at the West Antarctic Peninsula
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Modeling of the Influence of Sea Ice Cycle and Langmuir Circulation on the Upper Ocean Mixed Layer Depth and Freshwater Distribution at the West Antarctic Peninsula

机译:海冰循环与朗马尔循环对西南半岛上海混合层深度和淡水分布的建模

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摘要

The Southern Ocean is chronically undersampled due to its remoteness, harsh environment, and sea ice cover. Ocean circulation models yield significant insight into key processes and to some extent obviate the dearth of data; however, they often underestimate surface mixed layer depth (MLD), with consequences for surface water-column temperature, salinity, and nutrient concentration. In this study, a coupled circulation and sea ice model was implemented for the region adjacent to the West Antarctic Peninsula, a climatically sensitive region which has exhibited decadal trends towards higher ocean temperature, shorter sea ice season, and increasing glacial freshwater input, overlain by strong interannual variability. Hindcast simulations were conducted with different air-ice drag coefficients and Langmuir circulation parameterizations to determine the impact of these factors on MLD. Including Langmuir circulation deepened the surface mixed layer, with the deepening being more pronounced in the shelf and slope regions. Optimal selection of an air-ice drag coefficient also increased modeled MLD by similar amounts and had a larger impact in improving the reliability of the simulated MLD interannual variability. This study highlights the importance of sea ice volume and redistribution to correctly reproduce the physics of the underlying ocean, and the potential of appropriately parameterizing Langmuir circulation to help correct for biases towards shallow MLD in the Southern Ocean. The model also reproduces observed freshwater patterns in the West Antarctic Peninsula during late summer and suggests that areas of intense summertime sea ice melt can still show net annual freezing due to high sea ice formation during the winter.
机译:由于其遥感,恶劣的环境和海冰盖,南海慢性地缺乏采样。海洋循环模型对关键过程产生了显着的洞察力,在一定程度上避免了缺乏数据;然而,它们通常低估表面混合层深度(MLD),后果水柱温度,盐度和营养浓度的后果。在这项研究中,对西南极半岛相邻的地区实施了耦合循环和海冰模型,这是一种气候敏感的区域,该区域表现出较高的海洋温度,较短的海冰季节,以及增加冰川淡水投入,覆盖物强大的际际变化。用不同的空气冰拖累系数和Langmuir循环参数化进行了Hindcast模拟,以确定这些因素对MLD的影响。包括Langmuir循环加深了表面混合层,在搁板和斜坡区域中更加明显。通过相似的量,空气冰拖曳系数的最佳选择也增加了模型的MLD,并且对提高模拟MLD依赖性的可靠性具有更大的影响。本研究强调了海冰卷的重要性,并重新分配来正确再现潜在海洋物理学,以及适当参数化Langmuir循环的潜力,以帮助纠正南海浅景观的浅覆盖物。该模型在夏季期间还繁殖了西南半岛的观察到的淡水模式,并提出了激烈的夏季海冰融化领域仍然可以在冬季海洋冰层展示净年度冻结。

著录项

  • 来源
    《Oceanographic Literature Review 》 |2020年第10期| 2096-2096| 共1页
  • 作者单位

    Department of Earth and Atmospheric Sciences Massachusetts Institute of Technology Cambridge MA United States;

    Department of Earth and Atmospheric Sciences Massachusetts Institute of Technology Cambridge MA United States;

    Department of Earth and Atmospheric Sciences Massachusetts Institute of Technology Cambridge MA United States;

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