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Two- and Three-Dimensional Model for Sound Attenuation by Objects on Propagation

机译:对象传播对象声音衰减的两个和三维模型

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It is well known that the performance of open field acoustic sensors is affected by complex sound propagation phenomena occurring in outdoor settings, such as ground effects, noise from atmospheric turbulence, refraction by wind and temperature gradients, diffraction over buildings and hills, and acoustic sensors on moving platforms. In addition, the behavior of sound propagation changes at the interface of different media. We have developed a time-domain simulation that enables the numerical simulation of all the mentioned factors. This capability provides information on the effect of sound waves once they reach a sensor or a target. We are implementing this algorithm for 3D, long-distance propagations. The challenge is three-fold: a) efficient parallelization; b) moving frame capability in 3D for long-distance propagation simulation; c) accurately implementing the perfectly match layer (PML) methods to represent the free boundaries. In this paper, we have selected cylinders as the objects for sound wave to propagate through. Both 2D and 3D simulations were conducted. The results are compared with available measurement data in the literature. The phenomena are discussed in the context of 2D and 3D propagation behaviors.
机译:众所周知,开放场声学传感器的性能受到在室外设定中发生的复杂声音传播现象的影响,例如地面效应,来自大气湍流的噪声,风和温度梯度折射,延伸超过建筑物和丘陵,以及声学传感器在移动平台上。此外,在不同媒体的界面处的声音传播变化的行为。我们开发了一个时域模拟,可以实现所有提到的因素的数值模拟。在达到传感器或目标后,此功能提供有关声波效果的信息。我们正在实现该算法的3D长距离传播。挑战是三倍:a)有效的并行化; b)长距离传播模拟的3D中移动框架能力; c)准确地实现完美匹配的层(PML)方法来表示自由边界。在本文中,我们选择了圆柱体作为声波传播的物体。进行了2D和3D模拟。将结果与文献中的可用测量数据进行比较。在2D和3D传播行为的上下文中讨论了该现象。

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