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A three-dimensional modeling method for the trapezoidal cavity and multi-coupled cavity with various impedance boundary conditions

机译:具有不同阻抗边界条件的梯形腔和多腔耦合的三维建模方法

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摘要

A three-dimensional modified Fourier series method is applied to study the acoustic characteristics of the trapezoidal cavity and coupled cavity with various impedance boundary conditions. The formulation is constructed to describe the cavity systems based on the energy principle. The admissible sound pressure function is set to a Fourier cosine series and supplementary functions. These supplementary functions can eliminate the discontinuous or jumping phenomenon in the boundaries. The trapezoidal cavity can be transformed into regular rectangular cavity by coordinate transformation. The triangular cavity can be obtained by changing the dimensions of the trapezoidal cavity. The coupled cavity consists of two irregular triangular cavities and the coupling interface is regarded as a non-dissipative surface. The accuracy and convergence of the present results are verified by comparison with the results obtained by finite element calculation and experiment. The natural frequencies and mode shapes of the trapezoidal cavity and coupled cavity are studied. Besides, the sound pressure response under monopole sound source excitation is obtained. What's more, some results are obtained in the basis of effects of various factors on acoustic characteristics, such as shapes, geometric parameters and impedance values. These results provide a benchmark for the future researches. (C) 2019 Elsevier Ltd. All rights reserved.
机译:采用三维修正傅里叶级数方法研究了在不同阻抗边界条件下梯形腔和耦合腔的声学特性。构造该公式以基于能量原理描述空腔系统。允许的声压函数设置为傅立叶余弦级数和补充函数。这些补充功能可以消除边界中的不连续或跳跃现象。梯形腔可以通过坐标变换变换为规则的矩形腔。可以通过更改梯形腔的尺寸来获得三角形腔。耦合腔由两个不规则的三角形腔组成,耦合界面被视为非耗散表面。通过与有限元计算和实验的结果进行比较,验证了本结果的准确性和收敛性。研究了梯形腔和耦合腔的固有频率和模态。此外,获得了单极声源激励下的声压响应。此外,在各种因素对声学特性(例如形状,几何参数和阻抗值)的影响的基础上获得了一些结果。这些结果为将来的研究提供了基准。 (C)2019 Elsevier Ltd.保留所有权利。

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