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A new boundary-element method for predicting outdoor sound propagation and application to the case of a sound barrier in the presence of downward refraction

机译:一种预测室外声音传播的新边界元方法,并在存在向下折射的情况下应用于声屏障情况

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摘要

Anew boundary-element method for predicting outdoor sound propagation over uneven ground is presented. This allows the sound field around complex boundaries (various absorptive properties and shapes) and in the presence of refraction to be calculated accurately. The total sound pressure is expressed as the sum of the incident pressure and the pressure scattered by the obstacles in the propagation medium, involving layer potentials. The Green's function used in this formulation takes meteorological and ground effects into account and relies on recent models for propagation in inhomogeneous media, such as normal modes, residue series, the parabolic equation, or the fast-field program. In this paper, this new method. called Meteo-BEM, is derived, based on both boundary-element methods (BEM) in a quiescent medium, and propagation models in inhomogeneous media. The hypothetical case of a rigid, thin noise barrier on a flat ground, under a known sound-speed gradient condition, is studied. Comparison of numerical simulations with experimental results shows that this new method is a powerful tool for outdoor sound propagation prediction, which gives rise to many applications and developments.
机译:提出了一种新的边界元法,用于预测室外声音在不平坦地面上的传播。这样可以精确地计算出复杂边界(各种吸收特性和形状)周围的声场,并且可以精确地计算出存在折射的声场。总声压表示为入射压力与传播介质中障碍物散射的压力之和,其中包括层电位。此公式中使用的格林函数考虑了气象和地面效应,并依赖于在不均匀介质中传播的最新模型,例如正常模式,残差序列,抛物线方程或快速场程序。本文采用这种新方法。基于静态介质中的边界元素方法(BEM)和非均匀介质中的传播模型,得出了称为Meteo-BEM的模型。研究了在已知的声速梯度条件下,平坦地面上坚硬,薄的噪声屏障的假设情况。数值模拟与实验结果的比较表明,该新方法是用于室外声音传播预测的强大工具,它引起了许多应用和发展。

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