首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Hydrostatic and non-hydrostatic studies of gravitational adjustment over a slope
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Hydrostatic and non-hydrostatic studies of gravitational adjustment over a slope

机译:边坡重力调整的静水力和非静水力研究

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In many numerical ocean models, the hydrostatic approximation is made. This approximation causes a considerable saving in computing time. However, for phenomena involving large vertical speeds, for many small scale phenomena, and in areas with weak stratification, the approximation becomes questionable. In this report, a a-coordinate hydrostatic C-grid model is extended to include non-hydrostatic dynamics. The test cases involve gravitational adjustment of a downslope flow. The first test case has a simplified slope profile and no ambient stratification in the deep basin. The second test case has ambient stratification and more realistic topography. The differences between hydrostatic and non-hydrostatic simulations are described and discussed. It is shown that the shapes of the head and the body of density driven plumes are better preserved in the non-hydrostatic experiments. The wave propagation away from the plume head is considerably reduced when including non-hydrostatic effects. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在许多数值海洋模型中,都进行了静水近似。这种近似可大大节省计算时间。但是,对于涉及大垂直速度的现象,对于许多小规模的现象以及在分层较弱的区域中,近似值是有问题的。在此报告中,将a坐标静水C网格模型扩展为包括非静水动力学。测试案例涉及重力调节下坡流。第一个测试用例具有简化的坡度轮廓,在深水盆中没有环境分层。第二个测试用例具有环境分层和更逼真的地形。描述和讨论了静水仿真与非静水仿真之间的差异。结果表明,在非静水实验中,密度驱动羽流的头部和身体形状得到了更好的保留。当包括非静水效应时,从烟羽头传播的波将大大减少。 (C)2004 Elsevier Ltd.保留所有权利。

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