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首页> 外文期刊>Journal of Fluid Mechanics >Enhanced dissipation for quasi-geostrophic motion over small-scale topography
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Enhanced dissipation for quasi-geostrophic motion over small-scale topography

机译:在小规模地形上增强了准地转运动的耗散

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摘要

The effect of a small-scale topography on large-scale, small-amplitude oceanic motion is analysed using a two-dimensional quasi-geostrophic model that includes free-surface and beta effects, Ekman friction and viscous (or turbulent) dissipation. The topography is two-dimensional and periodic; its slope is assumed to be much larger than the ratio of the ocean depth to the Earth's radius. An averaged equation of motion is derived for flows with spatial scales that are much larger than the scale of the topography and either (i) much larger than or (ii) comparable to the radius of deformation. Compared to the standard quasi-geostrophic equation, this averaged equation contains an additional dissipative term that results from the interaction between topography and dissipation. In case (i) this term simply represents an additional Ekman friction, whereas in case (ii) it is given by an integral over the history of the large-scale flow. The properties of the additional term are studied in detail. For case (i) in particular, numerical calculations are employed to analyse the dependence of the additional Ekman friction on the structure of the topography and on the strength of the original dissipation mechanisms. [References: 28]
机译:使用包括自由表面和β效应,Ekman摩擦力和粘性(或湍流)耗散的二维拟地转模型,分析了小型地形对大规模,小振幅海洋运动的影响。地形是二维的和周期性的。假定其坡度比海洋深度与地球半径之比大得多。对于空间比例远大于地形比例且(i)远大于或(ii)与变形半径相当的空间比例的流动,可以导出平均运动方程。与标准的准地转方程相比,该平均方程包含一个附加的耗散项,该耗散项是由于地形和耗散之间的相互作用而产生的。在情况(i)中,该术语仅表示附加的埃克曼摩擦,而在情况(ii)中,由大流量历史上的积分给出。详细研究了附加术语的属性。特别是对于情况(i),采用数值计算来分析额外的埃克曼摩擦对地形结构和原始耗散机制强度的依赖性。 [参考:28]

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