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Applications of the Green Functions in the Study of Acoustic Problems in Open and Closed Spaces.

机译:Green函数在开放空间和封闭空间声学问题研究中的应用。

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摘要

This paper presents a set of analytical solutions (Green functions) for the steady state response of a homogenous acoustic three-dimensional space subjected to a point harmonic load or a spatially sinusoidal harmonic line load. The propagation medium is modelled with plane surfaces placed so as to reproduce spaces that vary from a simple half-space to a rectangular parallelepiped closed space. The final expressions are implemented to evaluate first the pressure field inside a rectangular parallelepiped room, whose walls allow different absorption coefficients. Then, the acoustic scattering of a three-dimensional sound source by an infinitely long rigid barrier in the vicinity of a tall building is evaluated using the boundary-element method (BEM), making use of the analytical solution for a spatially sinusoidal line source. The use of these Green functions allows the required BEM discretization to be limited to the surface of the barrier, avoiding the discretization of the tall building and ground. The calculations are performed in the frequency domain and time signatures are obtained by means of inverse Fourier transforms. Complex frequencies are used to attenuate the response at the end of the time frame, which is taken into account by rescaling the time response.
机译:本文针对均质声学三维空间在点谐波载荷或空间正弦谐波线载荷下的稳态响应提供了一套解析解(格林函数)。将传播介质建模为放置平面,以便复制从简单的半空间到长方体的封闭空间变化的空间。最终表达式的实现是为了首先评估矩形平行六面体室内的压力场,该平行六面体室的壁允许不同的吸收系数。然后,利用边界元法(BEM),利用空间正弦线源的解析解,评估了高层建筑附近无限长的刚性障碍物对三维声源的声散射。这些绿色功能的使用允许将所需的BEM离散化限制在屏障的表面,从而避免了高层建筑物和地面的离散化。该计算在频域中进行,并且通过逆傅立叶变换获得时标。复数频率用于衰减时间帧末尾的响应,可以通过重新缩放时间响应来考虑这一点。

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