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Time-Domain Impedance Boundary Conditions for Simulations of Outdoor Sound Propagation

机译:模拟室外声音传播的时域阻抗边界条件

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摘要

Finite difference time-domain methods are well suited to study sound propagation in the context of transportation noise. In this paper, time-domain boundary conditions are considered for impedance models classically used for outdoor grounds. These impedance models have usually been obtained in the frequency domain and cannot be translated directly into the time domain. The derivation of the time-domain boundary condition is based on the approximation of the impedance as a sum of well-chosen template functions. Because of the forms of the template functions, the recursive convolution technique can be applied; this is a fast and computationally efficient method to calculate a discrete convolution. The impedance boundary conditions are validated using a linearized Euler equations solver in one- and three-dimensional geometries; comparisons with analytical solutions in the time and frequency domains are presented. The methods used to identify the coefficients of the template functions are shown to be of great importance. Among the three methods described, the optimization method in the frequency domain can be recommended, because it can be applied to many impedance models and allows the values of the coefficients to be constrained, which is needed to obtain accurate numerical results.
机译:时域有限差分法非常适合研究运输噪声情况下的声音传播。在本文中,对于经典用于室外地面的阻抗模型考虑了时域边界条件。这些阻抗模型通常是在频域中获得的,无法直接转换为时域。时域边界条件的推导是基于阻抗的近似,即选择好的模板函数之和。由于模板函数的形式,可以应用递归卷积技术。这是一种计算离散卷积的快速且计算有效的方法。使用线性欧拉方程求解器在一维和三维几何中验证阻抗边界条件。提出了在时域和频域中与解析解的比较。示出了用于识别模板函数的系数的方法非常重要。在所描述的三种方法中,可以建议使用频域中的优化方法,因为它可以应用于许多阻抗模型,并且可以限制系数的值,这是获得准确数值结果所必需的。

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