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Atmospheric sound propagation in a moving fluid above an impedance plane: Application of the semi-analytic finite element method

机译:在阻抗平面上方的移动流体中的大气声音传播:应用半分析有限元方法

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This article uses a normal mode approach to predict atmospheric sound propagation over a locally reacting impedance plane. The semi-analytic finite element method is used to compute the normal modes, which enables the exact governing wave equation for a moving fluid to be solved in two dimensions. A locally reacting surface is added using the general Ingard-Myers boundary condition, and the transmission loss is obtained for cylindrical and spherical spreading for range independent problems. The approach developed in this article will, in principle, converge toward the exact solution and so has the potential to provide benchmark predictions for complex, range independent, outdoor sound propagation problems. Predictions are shown to provide good agreement with benchmark solutions available in the literature, including those with a logarithmic wind velocity profile. Results are also reported for a combination of a logarithmic wind velocity profile and a temperature inversion for ranges of up to 5 km. Finally, transmission loss predictions are reported for a relatively wide frequency range, and it is concluded that finite elements can provide an alternative approach for computing range independent outdoor sound propagation that converges to the exact solution.
机译:本文采用简正模方法预测局部反应阻抗平面上的大气声传播。采用半解析有限元法计算简正模态,从而可以在二维中求解运动流体的精确控制波动方程。利用一般的Ingard-Myers边界条件,增加了一个局部反应面,得到了与距离无关的圆柱形和球形扩散问题的传输损耗。本文开发的方法原则上会收敛到精确解,因此有可能为复杂的、距离无关的户外声音传播问题提供基准预测。结果表明,预测结果与文献中可用的基准解决方案(包括具有对数风速剖面的基准解决方案)具有良好的一致性。此外,还报告了对数风速剖面和最长5km范围内温度反演的结果。最后,对相对较宽的频率范围内的传输损耗进行了预测,并得出结论,有限元可以为计算与距离无关的室外声传播提供一种替代方法,该方法收敛于精确解。

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