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Prediction of sound absorption coefficients of poroelastic media by the homogenization method

机译:均质化方法预测多孔弹性介质的吸声系数

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This paper proposes a new macroscopic model for sound-absorbing poroelastic media which is derived by using the homogenization theory based on the method of asymptotic expansions. The derivation of the macroscopic properties and governing equations takes into account the multiphysics occurring in poroelastic media for sound absorption, including elastic motions of the solid phase, compressible viscous fluid flow, and the distributions of pressure and temperature in the fluid phase. The coupled effects between the elastic solid and the fluid pressure, and the temperature and the fluid pressure are also considered. In contrast to the conventional Biot's model, which includes heuristic formulae, the proposed method yields a rigorous model that is consistent with the principal governing equations on the microscopic scale. Utilizing several models that have simple microscopic geometry and comparing the numerical solutions obtained using the proposed method with corresponding analytical solutions, we demonstrate that the derived macroscopic governing equations can provide accurate and effective predictions.
机译:提出了一种基于渐近展开法的均质化理论,推导了一种新型的吸声多孔弹性介质的宏观模型。宏观特性和控制方程的推导考虑了在多孔弹性介质中发生的用于吸声的多物理场,包括固相的弹性运动,可压缩的粘性流体流动以及流体相中压力和温度的分布。还考虑了弹性固体和流体压力以及温度和流体压力之间的耦合效应。与传统的包括启发式公式的比奥模型相反,所提出的方法产生了一个严格的模型,该模型与微观尺度上的主要控制方程式是一致的。利用几个具有简单微观几何形状的模型,并将使用该方法获得的数值解与相应的解析解进行比较,我们证明了导出的宏观控制方程可以提供准确而有效的预测。

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