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Partially implicit finite difference scheme for calculating dynamic pressure in a terrain-following coordinate non-hydrostatic ocean model

机译:地形跟随坐标非静水海洋模型中动压的部分隐式有限差分格式

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To improve the efficiency of the terrain-following sigma-coordinate non-hydrostatic ocean model, a partially implicit finite difference (PIFD) scheme is proposed. By using explicit terms instead of implicit terms to discretize the parts of the vertical dynamic pressure gradient derived from the sigma-coordinate transformation, the coefficient matrix of the discrete Poisson equation that the dynamic pressure satisfies can be simplified from 15 diagonals to 7 diagonals. The PIFD scheme is shown to run stably when it is applied to simulate five benchmark cases, namely, a standing wave in a basin, a surface solitary wave, a lock-exchange problem, a periodic wave over a bar and a tidally induced internal wave. Compared with the conventional fully implicit finite difference (FIFD) scheme, the PIFD scheme produces simulation results of equivalent accuracy at only 40-60% of the computational cost. The PIFD scheme demonstrates strong applicability and can be easily implemented in sigma-coordinate ocean models. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了提高地形跟踪西格玛坐标非静水海洋模型的效率,提出了一种部分隐式有限差分(PIFD)方案。通过使用显式项而不是隐式项来离散化从sigma坐标转换得出的垂直动压力梯度的各个部分,可以将动压力满足的离散泊松方程的系数矩阵从15个对角线简化为7个对角线。当将PIFD方案用于模拟五个基准情况时,表明该方案运行稳定,这些情况是盆地中的驻波,表面孤立波,锁定交换问题,杆上的周期性波和潮汐引起的内波。与常规的完全隐式有限差分(FIFD)方案相比,PIFD方案仅以40-60%的计算成本即可产生等效精度的仿真结果。 PIFD方案展示了强大的适用性,可以轻松地在sigma坐标海洋模型中实施。 (C)2016 Elsevier Ltd.保留所有权利。

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