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Understanding the Regional Variability of Eddy Diffusivity in the Pacific Sector of the Southern Ocean

机译:了解南大洋太平洋地区涡流扩散的区域变异性

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摘要

A diagnostic framework is presented, based on the Nakamura effective diffusivity, to investigate the regional variation in eddy diffusivity. Comparison of three different diffusivity calculations enables the effects of locally enhanced tracer diffusion to be distinguished from the streamwise average. It also enables the distinction to be made between locally generated complexity in the tracer structure and that advected into a particular domain. The technique is applied to the Pacific sector of the Southern Ocean. The results highlight the important role that the mean flow plays in determining eddy diffusivity. The effective diffusivity is not simply related to the eddy kinetic energy: in regions of a strong mean flow the eddy diffusivity can be suppressed even in the presence of moderately strong eddy activity; conversely, in a region of weak mean flow the eddy diffusivity can be enhanced even in the presence of only weak eddy activity. This casts doubt on the ability of parameterizations based solely on the eddy kinetic energy to adequately characterize the eddy diffusivity in regions of strongly varying mean flow such as the Southern Ocean. The results are, however, consistent with the eddy transport and mixing variability predicted by potential-vorticity-based arguments.
机译:基于中村有效扩散率,提出了一个诊断框架,以研究涡流扩散率的区域变化。三种不同扩散率计算的比较使得可以将局部增强的示踪剂扩散的影响与流向平均值加以区分。它还可以区分跟踪器结构中本地生成的复杂性和平移到特定域中的复杂性。该技术被应用于南大洋的太平洋地区。结果突出了平均流量在确定涡流扩散率中的重要作用。有效扩散率不仅仅与涡动能有关:在强平均流区域中,即使存在中等强度的涡流活动,涡流扩散率也可以得到抑制。相反,在平均流量较弱的区域,即使仅存在较弱的涡流活动,涡流的扩散率也可以提高。这使人们对仅基于涡动能来进行参数化的能力的怀疑,这些参数不足以充分表征平均流剧烈变化的区域(如南大洋)中的涡流扩散率。但是,结果与基于潜在涡度的论证所预测的涡流和混合变率一致。

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  • 来源
    《Journal of Physical Oceanography 》 |2009年第9期| 2011-2023| 共13页
  • 作者单位

    British Antarctic Survey, High Cross, Madingley Road, Cambridge, CB3 0ET, United Kingdom;

    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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