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首页> 外文期刊>Journal of Physical Oceanography >On Eddy Viscosity, Energy Cascades, and the Horizontal Resolution of Gridded Satellite Altimeter Products
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On Eddy Viscosity, Energy Cascades, and the Horizontal Resolution of Gridded Satellite Altimeter Products

机译:网格卫星高度计产品的涡流粘度,能级数和水平分辨率

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Motivated by the recent interest in ocean energetics, the widespread use of horizontal eddy viscosity in models, and the promise of high horizontal resolution data from the planned wide-swath satellite altimeter, this paper explores the impacts of horizontal eddy viscosity and horizontal grid resolution on geostrophic turbulence, with a particular focus on spectral kinetic energy fluxes Π(K) computed in the isotropic wave-number (K) domain. The paper utilizes idealized two-layer quasigeostrophic (QG) models, realistic high-resolution ocean general circulation models, and present-generation gridded satellite altimeter data. Adding horizontal eddy viscosity to the QG model results in a forward cascade at smaller scales, in apparent agreement with results from present-generation altimetry. Eddy viscosity is taken to roughly represent coupling of mesoscale eddies to internal waves or to submesoscale eddies. Filtering the output of either the QG or realistic models before computing Π(K) also greatly increases the forward cascade. Such filtering mimics the smoothing inherent in the construction of present-generation gridded altimeter data. It is therefore difficult to say whether the forward cascades seen in present-generation altimeter data are due to real physics (represented here by eddy viscosity) or to insufficient horizontal resolution. The inverse cascade at larger scales remains in the models even after filtering, suggesting that its existence in the models and in altimeter data is robust. However, the magnitude of the inverse cascade is affected by filtering, suggesting that the wide-swath altimeter will allow a more accurate determination of the inverse cascade at larger scales as well as providing important constraints on smaller-scale dynamics.
机译:受近期对海洋能量学的兴趣,模型中水平涡流粘度的广泛使用以及计划中的宽波卫星高度计有望获得高水平分辨率数据的推动,本文探讨了水平涡流粘度和水平网格分辨率对海洋能量的影响。地转湍流,特别关注在各向同性波数(K)域中计算的频谱动能通量Π(K)。本文利用了理想化的两层准地转(QG)模型,现实的高分辨率海洋总环流模型以及当前的网格化卫星高度计数据。向QG模型中添加水平涡流粘度会导致较小规模的正向层叠,这与现代测高仪的结果明显吻合。涡流粘度被认为是粗略地表示中尺度涡旋与内波或次中尺度涡旋的耦合。在计算Π(K)之前对QG或实际模型的输出进行滤波也会大大增加前向级联。这种过滤模仿了现代网格化高度计数据构造中固有的平滑。因此,很难说出在当前的高度计数据中看到的正向级联是由于真实的物理学(此处由涡流粘度表示)还是由于水平分辨率不足。即使在过滤后,较大比例的逆级联仍保留在模型中,这表明在模型和高度计数据中它的存在是可靠的。但是,逆级联的大小会受到滤波的影响,这表明宽幅高度计将允许在较大比例下更准确地确定逆级联,并对较小比例的动力学提供重要约束。

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  • 来源
    《Journal of Physical Oceanography 》 |2013年第2期| 283-300| 共18页
  • 作者单位

    Department of Earth and Environmental Sciences, University of Michigan, Ann Arbor, MI 48109-1005;

    Physical Oceanography Department, Woods Hole Oceanographic Institution, Woods Hole, Massachusetts;

    Institute for Geophysics, Jackson School of Geosciences, The University of Texas at Austin, Austin, Texas, and Departement de Physique et LPO, Universite de Bretagne Occidental, CNRS, Brest, France;

    Oceanography Division, Naval Research Laboratory, Stennis Space Center, Mississippi;

    Oceanography Division, Naval Research Laboratory, Stennis Space Center, Mississippi;

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