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Inverse characterization of the frequency-dependent acoustic and elastic parameters of porous materials by surface-normal impedance method

机译:通过表面正常阻抗法对多孔材料的频率依赖声学和弹性参数的逆表征

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摘要

A method for characterizing the frequency-dependent acoustic and elastic parameters of porous materials is proposed and validated in the paper, based on the Biot theory. The parameters include the characteristic impedance, propagation coefficient (also denoted as complex wave number), and longitudinal modulus. The first two are the macroscopic acoustic properties of pore fluid, while the last one is the elastic property of frame. A system related to the three parameters is constructed through the normal surface impedance of three samples with different thickness, based on the transfer matrix theory. With the measured surface impedance and appropriate initial values, an iterative procedure based on the Newton-Raphson method is used to solve the system. The three parameters are identified simultaneously, and then validated by two experimental methods, respectively, i.e., a modified two cavity method for the acoustic parameters and a quasi-static mechanical method for the elastic parameter. The parameters identified from the proposed method are consistent with the results of the two methods except for the imaginary part of the longitudinal modulus. It is shown that the proposed method would have a better performance if the discrepancy of frame displacements among different samples is moderate, corresponding to a reasonable selection of the thickness.
机译:提出了一种用于表征多孔材料的依赖于频率的声波和弹性参数的方法和验证的文件,根据毕奥理论。这些参数包括特性阻抗,传播系数(也表示为复杂的波数),和纵向模量。前两个是孔隙流体的宏观声学特性,而最后一个是框架的弹性特性。相关的三个参数的系统,是通过三个样品具有不同厚度的正常表面阻抗构成的基础上,转移矩阵理论。与测得的表面阻抗和适当的初始值,则使用基于牛顿 - 拉夫逊法迭代过程来解决该系统。这三个参数被同时识别,然后由两个实验方法,分别,即用于声学参数的改进的二腔的方法和用于弹性参数准静态机械方法证实。从所提出的方法所确定的参数与除了纵向模量的虚部的两种方法的结果相一致。结果表明,所提出的方法将具有更好的性能,如果帧位移的不同样品之间的差异是温和的,对应于该厚度的合理选择。

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