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Numerical stabilities and boundary conditions in time-domain Eulerian simulations of acoustic wave propagations with and without background flow

机译:带有和不带有背景流的声波传播的时域欧拉模拟中的数值稳定性和边界条件

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摘要

A thorough numerical analysis is performed for time-domain simulation of acoustic wave propagations in the atmosphere, with the ground modeled as a porous medium. Two types of computational grid arrangement for the simulation, i.e., the staggered grid and the collocated grid, are considered. It is proved that the computational schemes based on these two grids are identical under certain finite differencing procedures. The numerical stability analysis is studied that applies to both of the grids. Non-reflecting, absorbing boundary conditions are used at the free-space boundary. Simulations on the collocated grid are then carried out for a model problem of sound propagation in the air/ground to confirm the equivalency of the two grids and to investigate the effectiveness of non-reflecting boundary conditions. The results are compared with the data in the literature and with bench-mark simulation, and very good agreements have been achieved. (c) 2008 Elsevier Inc. All rights reserved.
机译:对于地面中的多孔介质,对声波在大气中的传播进行时域仿真,进行了全面的数值分析。考虑了用于仿真的两种类型的计算网格布置,即,交错网格和并置网格。证明了在某些有限差分程序下,基于这两个网格的计算方案是相同的。研究了适用于两个网格的数值稳定性分析。在自由空间边界处使用非反射,吸收性边界条件。然后针对空气/地面中声音传播的模型问题,对并置网格进行了仿真,以确认两个网格的等效性,并研究了非反射边界条件的有效性。将结果与文献中的数据和基准模拟进行比较,并取得了很好的协议。 (c)2008 Elsevier Inc.保留所有权利。

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