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On the grid dependence of lateral mixing parameterizations for global ocean simulations

机译:全球海洋模拟中侧向混合参数化的网格依赖性

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Using an ice-ocean coupled model on an eddy-admitting, global, 0.4 degrees mesh, we find that simulations of tracer properties and kinetic energy differ much more at high latitudes than at mid-to-low latitudes under different choices for the lateral tracer mixing parameterization, particularly between Gent and McWilliams (GM) mixing, which is Laplacian in form, and biharmonic tracer diffusion. Besides the more physical, rotated diffusivity used in GM, the differences in these two formulations can be traced to two effects, (1) scale selectivity, in which Laplacian forms damp wave energy more quickly than biharmonic mixing formulations, and (2) grid dependence of the diffusion coefficient, which is particularly important at high latitudes where the grid scale decreases dramatically on the sphere. This study explores some effects of these parameterization choices at high latitudes, including the anisotropic GM formulation. Regardless of the mixing parameterization chosen, future global simulations should take into account variations in grid cell area, in order to prevent diffusion from dominating advection in the evolution of high latitude tracers and circulation. (c) 2007 Elsevier Ltd. All rights reserved.
机译:在涡流允许的全球0.4度网格上使用冰-海耦合模型,我们发现,在侧向示踪剂的不同选择下,高纬度的示踪剂特性和动能的模拟与中低纬度的模拟相差很大混合参数化,尤其是形式为Laplacian的Gent和McWilliams(GM)混合,以及双谐波示踪剂扩散。除了在GM中使用更具物理性的旋转扩散系数外,这两种公式的差异还可以追溯到两种效应:(1)比例选择性,其中拉普拉斯算子比双谐波混合公式更快地形成阻尼波能量,以及(2)网格依赖性的扩散系数,这在高纬度地区尤为重要,在高纬度地区,网格比例在球体上急剧减小。这项研究探索了在高纬度下这些参数化选择的一些影响,包括各向异性的GM公式。无论选择哪种混合参数,未来的全球模拟都应考虑网格单元面积的变化,以防止扩散在高纬度示踪剂和环流演变过程中控制平流。 (c)2007 Elsevier Ltd.保留所有权利。

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