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Numerical study on spatially varying bottom friction coefficient of a 2D tidal model with adjoint method

机译:伴随法二维潮汐模型空间变化底摩擦系数的数值研究

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Based on the simulation of M-2 tide in the Bohai Sea, the Yellow Sea and the East China Sea, TOPEX/Poseidon altimeter data are assimilated into a 2D tidal model to study the spatially varying bottom friction coefficient (BFC) by using the adjoint method. In this study, the BFC at some grid points are selected as the independent BFC, while the BFC at other grid points can be obtained through linear interpolation with the independent BFC. Two strategies for selecting the independent BFC are discussed. In the first strategy, one independent BFC is uniformly selected from each V x V area. In the second one, the independent BFC are selected based on the spatial distribution of water depth. Twin and practical experiments are carried out to compare the two strategies. In the twin experiments, the adjoint method has a strong ability of inverting the prescribed BFC distributions combined with the spatially varying BFC. In the practical experiments, reasonable simulation results can be obtained by optimizing the spatially varying independent BFC. In both twin and practical experiments, the simulation results with the second strategy are better than those with the first one. The BFC distribution obtained from the practical experiment indicates that the BFC in shallow water are larger than those in deep water in the Bohai Sea, the North Yellow Sea, the South Yellow Sea and the East China Sea individually. However, the BFC in the East China Sea are larger than those in the other areas perhaps because of the large difference of water depth or bottom roughness. The sensitivity analysis indicates that the model results are more sensitive to the independent BFC near the land. (c) 2006 Elsevier Ltd. All rights reserved.
机译:基于对渤海,黄海和东海M-2潮汐的模拟,将TOPEX / Poseidon高度计数据同化为2D潮汐模型,以利用伴随运动研究空间变化的底部摩擦系数(BFC)方法。在这项研究中,选择某些网格点处的BFC作为独立BFC,而其他网格点处的BFC可以通过使用独立BFC进行线性插值来获得。讨论了选择独立BFC的两种策略。在第一种策略中,从每个V x V区域中均匀选择一个独立的BFC。在第二个中,基于水深的空间分布选择独立的BFC。进行了孪生和实际实验以比较这两种策略。在双生子实验中,伴随方法具有强大的能力,可以将指定的BFC分布与空间变化的BFC结合起来。在实际实验中,通过优化空间变化的独立BFC可以获得合理的仿真结果。在双生实验和实际实验中,采用第二种策略的仿真结果均优于采用第一种策略的仿真结果。通过实际实验得到的BFC分布表明,渤海,北黄海,南黄海和东海的浅水BFC分别大于深水的BFC。但是,东海的BFC比其他地区的BFC更大,这可能是因为水深或海底粗糙度差异很大。敏感性分析表明,模型结果对陆地附近的独立BFC更为敏感。 (c)2006 Elsevier Ltd.保留所有权利。

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