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Uniform theory of diffraction (UTD)-based solution for sound diffraction caused by an array of obstacles

机译:衍射均匀理论(UTD)基于障碍阵列引起的声音衍射解决方案

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摘要

A formulation based on the uniform theory of diffraction (UTD) for the analysis of the multiplediffraction of a spherical sound wave caused by a series of wedges or knife-edges is hereby presented. The receiver location has to be considered at the same height as the preceding obstacles and at the same inter-obstacle distance from the last wedge. The solution, which is based on a UTD-physical optics formulation for radio-wave multiple-diffraction and has been validated through comparison with a geometrical theory of diffraction acoustic model, is computationally more efficient than other existing methods thanks to the fact that only single diffractions are involved in the calculations (high-order diffraction terms are not considered in the diffraction coefficients), thus allowing for the consideration of a great number of obstacles. In such a way, the proposed solution overcomes the limitations of previous works when multiple acoustic diffraction caused by an array of elements of equal height is to be analyzed. Therefore, the results can be applied in the study of sound propagation in scenarios where multiple-diffraction over a series of edges of equal height and periodical spacing has to be considered, such as the typical audience seating of a concert hall. (C) 2017 Acoustical Society of America.
机译:基于衍射的用于引起一系列楔或刀刃的球形声波的multiplediffraction的分析统一理论(UTD)的制剂在此呈现。该接收器的位置具有相同的高度与前面的障碍,并在从最后一个楔的相同障碍物间距离加以考虑。该溶液中,是基于一个UTD-物理光学制剂用于无线电波的多个衍射并通过与衍射声学模型的几何理论比较已被验证,在计算上比其它现有的方法由于以下事实更有效,只有单个衍射参与计算(高阶衍射术语不是在衍射系数考虑),从而使审议的障碍大量的。以这样的方式,所提出的解决方案克服了以前的作品的限制时引起的高度相等的元件的阵列多个声衍射是要被分析。因此,结果可以在声音传播的在其中多个衍射在一系列相等的高度和周期间隔的边缘必须被考虑,如音乐厅的典型受众的座位场景中的研究来施加。 (c)2017年声学社会。

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