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傅里叶伪谱时域方法在近刚性适度弯曲表面正交曲线坐标系中的应用。

Application of the Fourier pseudospectral time-domain method in orthogonal curvilinear coordinates for near-rigid moderately curved surfaces.

作者信息

Hornikx Maarten, Dragna Didier

机构信息

Building Physics and Services, Department of the Built Environment, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.

Laboratoire de Mécanique des Fluides et d'Acoustique, UMR CNRS 5509, École Centrale de Lyon, Université de Lyon, 36 Avenue Guy de Collongue, 69134 Écully Cedex, France.

出版信息

J Acoust Soc Am. 2015 Jul;138(1):425-35. doi: 10.1121/1.4922954.

Abstract

The Fourier pseudospectral time-domain method is an efficient wave-based method to model sound propagation in inhomogeneous media. One of the limitations of the method for atmospheric sound propagation purposes is its restriction to a Cartesian grid, confining it to staircase-like geometries. A transform from the physical coordinate system to the curvilinear coordinate system has been applied to solve more arbitrary geometries. For applicability of this method near the boundaries, the acoustic velocity variables are solved for their curvilinear components. The performance of the curvilinear Fourier pseudospectral method is investigated in free field and for outdoor sound propagation over an impedance strip for various types of shapes. Accuracy is shown to be related to the maximum grid stretching ratio and deformation of the boundary shape and computational efficiency is reduced relative to the smallest grid cell in the physical domain. The applicability of the curvilinear Fourier pseudospectral time-domain method is demonstrated by investigating the effect of sound propagation over a hill in a nocturnal boundary layer. With the proposed method, accurate and efficient results for sound propagation over smoothly varying ground surfaces with high impedances can be obtained.

摘要

傅里叶伪谱时域方法是一种基于波动的高效方法,用于模拟非均匀介质中的声音传播。该方法用于大气声音传播时的一个局限性在于其局限于笛卡尔网格,只能处理类似阶梯状的几何形状。为了解决更任意的几何形状问题,已应用从物理坐标系到曲线坐标系的变换。为了该方法在边界附近的适用性,求解声速变量的曲线分量。研究了曲线傅里叶伪谱方法在自由场以及在各种形状的阻抗条上进行户外声音传播时的性能。结果表明,精度与最大网格拉伸比和边界形状变形有关,并且相对于物理域中的最小网格单元,计算效率有所降低。通过研究夜间边界层中声音在山丘上传播的影响,证明了曲线傅里叶伪谱时域方法的适用性。使用所提出的方法,可以获得在具有高阻抗的平滑变化地面上声音传播的准确而高效的结果。

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