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Time-domain solver in curvilinear coordinates for outdoor sound propagation over complex terrain

机译:曲线坐标系中的时域求解器,用于在复杂地形上传播室外声音

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摘要

The current work aims at developing a linearized Euler equations solver in curvilinear coordinates to account for the effects of topography on sound propagation. In applications for transportation noise, the propagation environment as well as the description of acoustic sources is complex, and time-domain methods have proved their capability to deal with both atmospheric and ground effects. First, equations in curvilinear coordinates are examined. Then time-domain boundary conditions initially proposed for a Cartesian coordinate system are implemented in the curvilinear solver. Two test cases dealing with acoustic scattering by an impedance cylinder in a two-dimensional geometry and by an impedance sphere in a three-dimensional geometry are considered to validate the boundary conditions. Accurate solutions are obtained for both rigid and impedance surfaces. Finally, the solver is used to examine a typical outdoor sound propagation problem. It is shown that it is well-suited to study coupled effects of topography, mixed impedance ground and meteorological conditions.
机译:当前的工作旨在开发曲线坐标系中的线性Euler方程求解器,以解决地形对声音传播的影响。在运输噪声的应用中,传播环境以及声源的描述都很复杂,时域方法已证明它们具有处理大气和地面效应的能力。首先,检查曲线坐标中的方程。然后在曲线求解器中实现最初为笛卡尔坐标系提出的时域边界条件。为了验证边界条件,考虑了两个测试案例,分别处理二维几何中的阻抗圆柱体和三维几何中的阻抗球体的声散射。对于刚性和阻抗表面均可获得准确的解决方案。最后,求解器用于检查典型的室外声音传播问题。结果表明,它非常适合研究地形,混合阻抗地面和气象条件的耦合效应。

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