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On the numerical resolution of the bottom layer in simulations of oceanic gravity currents

机译:海洋重力流模拟中底层的数值分辨率

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摘要

The role of an increased numerical vertical resolution, leading to an explicit resolution of the bottom Ekman layer dynamics, is investigated. Using the hydrostatic ocean model NEMO-OPA9, we demonstrate that the dynamics of an idealised gravity current (on an inclined plane), is well captured when a few (around five) sigma-coordinate levels are added near the ocean floor. Such resolution allows to considerably improve the representation of the descent and transport of the gravity current and the Ekman dynamics near the ocean floor, including the important effect of Ekman veering, which is usually neglected in today’s simulations of the ocean dynamics. Results from high resolution simulations (with and zcoordinates) are compared to simulations with a vertical resolution commonly employed in today’s ocean models. The latter show a downslope transport that is reduced by almost an order of magnitude and the decrease in the along slope transport is reduced six-fold. We strongly advocate for an increase of the numerical resolution at the ocean floor, similar to the way it is done at the ocean surface and at the lower boundary in atmospheric models.
机译:研究了增加的数字垂直分辨率的作用,从而导致了底部Ekman层动力学的显式分辨率。使用静水海洋模型NEMO-OPA9,我们证明了在海床附近添加几个(大约五个)西格玛坐标水平时,可以很好地捕获理想化重力流(在倾斜平面上)的动力学。这样的分辨率可以极大地改善重力流的下降和传输以及海床附近的埃克曼动力学的表示,包括埃克曼转向的重要影响,这在当今的海洋动力学模拟中通常被忽略。将高分辨率模拟(具有和坐标)的结果与当今海洋模型中通常采用的具有垂直分辨率的模拟进行比较。后者显示的下坡运输量减少了近一个数量级,而沿斜坡运输量的减少量减少了六倍。我们强烈建议增加海底数值分辨率,这与在大气模型中在海面和下边界处进行的方法类似。

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