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A finite-element formulation for room acoustics simulation with microperforated panel sound absorbing structures: Verification with electro-acoustical equivalent circuit theory and wave theory

机译:微孔板吸声结构用于室内声学模拟的有限元公式:用电声等效电路理论和波动理论进行验证

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摘要

A simple frequency-domain finite-element method (FD-FEM) for sound field analyses inside rooms installed with microperforated panel (MPP) sound absorbing structures is described here. This method can also analyze sound absorbing structures composed of MPPs and permeable membranes (PM) simply by changing the only material parameters of MPP into those of PM. As the first stage of the study, the validity of the present FD-FEM is tested through the numerical experiments based on the impedance tube method for measuring the absorption characteristics at normal incidence. In the numerical experiments, we calculated the absorption characteristics of a single MPP absorber, a double-leaf MPP space absorber and a space absorber composed of MPP and PM by using the FD-FEM in two-dimensions, and the computed absorption characteristics are compared with those calculated by an electro-acoustical equivalent circuit theory or a wave theory based on Helmholtz-Kirchhoff boundary integral equation. The results showed that the presented FD-FEM can analyze the absorption characteristics at normal incidence of the MPP sound absorbing structures accurately with the simplicity of the formulation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文介绍了一种简单的频域有限元方法(FD-FEM),用于在安装了微孔板(MPP)吸声结构的房间内进行声场分析。通过将MPP的唯一材料参数更改为PM的材料参数,此方法还可以分析由MPP和渗透膜(PM)组成的吸声结构。作为研究的第一阶段,通过基于阻抗管法测量法向入射吸收特性的数值实验,测试了本FD-FEM的有效性。在数值实验中,我们使用二维FD-FEM计算了单个MPP吸收器,双叶MPP空间吸收器以及由MPP和PM组成的空间吸收器的吸收特性,并将计算出的吸收特性进行了比较通过基于Helmholtz-Kirchhoff边界积分方程的电声等效电路理论或波动理论计算的结果。结果表明,所提出的FD-FEM可以简化配方,准确地分析MPP吸声结构在法向入射时的吸收特性。 (C)2015 Elsevier Ltd.保留所有权利。

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