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A Kirchhoff approximation-based numerical method to compute multiple acoustic scattering of a moving source

机译:基于基尔霍夫近似的数值方法来计算运动源的多重声散射

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Within the scope of a study of external noise propagation from moving ground vehicles, a numerical method is developed to compute the acoustic field emitted by a moving source in the presence of scattering objects such as roads, buildings or noise-shields. This method is developed with the purpose of being used in a vehicle design process and therefore it must have a low computational cost, which requires a certain number of approximations. The case of a fixed point source is studied first then the effect of a movement of the source is taken into account through the introduction of a retarded time. The acoustic source is assumed to be represented by one or many harmonic monopoles of possibly different frequency moving with a constant speed in a quiescent flow field. Scattering from nearby perfectly reflecting objects is computed through a Kirchhoff-Helmholtz integral equation applying the Kirchhoff approximation. A ray-surface intersection algorithm to compute shadow areas is proposed. The method is validated against analytical solutions and experimental results for a fixed source, and against a higher-order finite difference time-domain method for the multiple scattering of a moving source. Results are good and show that this method can potentially be used to predict urban noise. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在研究移动地面车辆的外部噪声传播的范围内,开发了一种数值方法来计算在存在道路,建筑物或隔音罩等散射物体的情况下移动源发出的声场。开发这种方法是为了在车辆设计过程中使用它,因此它必须具有较低的计算成本,这需要一定数量的近似值。首先研究定点光源的情况,然后通过引入延迟时间来考虑光源运动的影响。假设声源由一个或多个可能具有不同频率的谐波单极子表示,它们在静态流场中以恒定速度运动。通过应用Kirchhoff近似的Kirchhoff-Helmholtz积分方程计算附近完美反射物体的散射。提出了一种计算阴影区域的射线表面相交算法。该方法针对固定源的解析解和实验结果进行了验证,针对移动源的多重散射采用了高阶有限差分时域方法进行了验证。结果很好,表明该方法可以潜在地用于预测城市噪声。 (C)2015 Elsevier Ltd.保留所有权利。

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