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Assessing the Roles of Three Eddy Types in Restratifying the Labrador Sea after Deep Convection

机译:评估三种对流类型在深对流后重新拉布拉多海中的作用

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摘要

Restratification after deep convection is one of the key factors in determining the temporal variability of dense water formation in the Labrador Sea. In the subsurface, it is primarily governed by lateral buoyancy fluxes during early spring. The roles of three different eddy types in this process are assessed using an idealized model of the Labrador Sea that simulates the restratification season. The first eddy type, warm-core Irminger rings, is shed from the boundary current along the west coast of Greenland. All along the coastline, the boundary current forms boundary current eddies. The third type, convective eddies, arises directly around the convection area. In the model, the latter two eddy types are together responsible for replenishing 30% of the winter heat loss within 6 months. Irminger rings add another 45% to this number. The authors' results thus confirm that the presence of Irminger rings is essential for a realistic amount of restratification in this area. The model results are compared to observations using theoretical estimates of restratification time scales derived for the three eddy types. The time scales are also used to explain contradicting conclusions in previous studies on their respective roles.
机译:深对流后的再定殖是确定拉布拉多海稠密水形成的时间变化的关键因素之一。在地下,它主要由早春期间的侧向浮力流控制。使用模拟再定殖季节的拉布拉多海理想模型评估了三种不同涡流在这一过程中的作用。第一种涡流类型是暖芯的艾明格环,它从格陵兰岛西海岸的边界流中流下。在整个海岸线上,边界流形成边界流涡流。第三类是对流涡流,直接出现在对流区域周围。在模型中,后两种涡流类型共同负责在6个月内补充30%的冬季热量损失。 Irminger戒指又给这个数字增加了45%。作者的结果因此证实,在该区域中进行现实的重新定殖,艾明格环的存在是必不可少的。使用从三种涡流类型得出的再平衡时间尺度的理论估计,将模型结果与观测值进行比较。时间尺度还用于解释先前研究中各自作用的矛盾结论。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第11期|p.2102-2119|共18页
  • 作者单位

    Royal Netherlands Meteorological Institute, De Bill, Netherlands,KNMI, Global Climate Division, P.O. Box 201, 3730 AE De Bilt, Netherlands;

    Royal Netherlands Meteorological Institute, De Bill, Netherlands;

    Royal Netherlands Meteorological Institute, De Bill, Netherlands;

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