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Modeling 3D thin sound-absorbing barriers using a dual formulation based on the boundary element method

机译:使用基于边界元法的双制剂建模3D薄吸收屏障

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摘要

This study implements a three-dimensional (3D) dual boundary element method formulation to simulate the propagation of sound generated by point pressure sources in the presence of a 3D thin acoustic barrier, placed on reflective ground and having a locally reactive surface. The formulation applies the classical boundary integral equation of the boundary element method (BEM) to one surface of the barrier and a normal derivative integral equation to the other surfaces. The sound absorption at the surface of the barrier is ascribed by applying an impedance boundary condition. Only the boundary of the barrier is discretized by boundary elements. The influence of the reflective ground is taken into account by using the fundamental solutions for a semi-infinite acoustic space and using the image source technique. The formulation is established in the frequency domain. After verification of the proposed model, different numerical applications are simulated to illustrate the applicability and usefulness of the proposed approaches. Time domain results and frequency domain results are analyzed. The number of barriers, the proximity of a vertical reflection plane and the sound absorption coefficient are the variables analyzed. (C) 2017 Institute of Noise Control Engineering.
机译:该研究实现了一种三维(3D)双边界元方法制构,以模拟在3D薄声学屏障的存在下通过点压源产生的声音传播,放置在反射地上并具有局部反应表面。该配方将边界元方法(BEM)的经典边界积分方程(BEM)应用于屏障的一个表面和另一个表面的普通衍生积分方程。通过施加阻抗边界条件来归因于屏障表面的声音吸收。仅通过边界元素离散地区屏障的边界。通过使用半无限声学空间的基本解决方案和使用图像源技术来考虑反射地面的影响。制剂在频域中建立。在验证所提出的模型之后,模拟了不同的数值应用,以说明所提出的方法的适用性和有用性。分析了时域结果和频域结果。障碍物的数量,垂直反射平面的接近度和声音吸收系数是分析的变量。 (c)2017年噪声控制工程研究所。

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