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The Dependence of Southern Ocean Meridional Overturning on Wind Stress

机译:南大洋子午线翻转对风应力的依赖性

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摘要

An eddy-resolving numerical model of a zonal flow, meant to resemble the Antarctic Circumpolar Current, is described and analyzed using the framework of J. Marshall and T. Radko. In addition to wind and buoyancy forcing at the surface, the model contains a sponge layer at the northern boundary that permits a residual meridional overturning circulation (MOC) to exist at depth. The strength of the residual MOC is diagnosed for different strengths of surface wind stress. It is found that the eddy circulation largely compensates for the changes in Ekman circulation. The extent of the compensation and thus the sensitivity of the MOC to the winds depend on the surface boundary condition. A fixed-heat-flux surface boundary severely limits the ability of the MOC to change. An interactive heat flux leads to greater sensitivity. To explain the MOC sensitivity to the wind strength under the interactive heat flux, transformed Eulerian-mean theory is applied, in which the eddy diffusivity plays a central role in determining the eddy response. A scaling theory for the eddy diffusivity, based on the mechanical energy balance, is developed and tested; the average magnitude of the diffusivity is found to be proportional to the square root of the wind stress. The MOC sensitivity to the winds based on this scaling is compared with the true sensitivity diagnosed from the experiments.
机译:使用J. Marshall和T. Radko的框架描述并分析了地层流的涡旋数值模型,该模型类似于南极绕极流。除了在表面施加风和浮力外,该模型在北边界还包含一个海绵层,该海绵层允许在深度处存在子午翻转环流(MOC)。对于表面风应力的不同强度,可以诊断出残余MOC的强度。发现涡流在很大程度上补偿了埃克曼环流的变化。补偿的程度以及MOC对风的敏感性取决于表面边界条件。固定的热通量表面边界严重限制了MOC的更改能力。相互作用的热通量导致更高的灵敏度。为了解释MOC在相互作用热通量下对风强度的敏感性,应用了变换的欧拉均值理论,其中涡流扩散率在确定涡流响应中起着核心作用。开发并测试了基于机械能平衡的涡流扩散率定标理论;发现扩散率的平均幅度与风应力的平方根成正比。将基于此缩放比例的MOC对风的灵敏度与根据实验诊断出的真实灵敏度进行比较。

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  • 来源
    《Journal of Physical Oceanography》 |2011年第12期|p.2261-2278|共18页
  • 作者单位

    Department of Earth, Atmospheric, and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, Massachusetts;

    Department of Earth, Atmospheric, and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, Massachusetts;

    Department of Earth, Atmospheric, and Planetary Sciences, Massachusetts Institute of Technology, Cambridge, Massachusetts;

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