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高阶粘性和热效应对多孔材料第一界面反射超声波的影响。

Influence of Higher Order Viscous and Thermal Effects on an Ultrasonic Wave Reflected from the First Interface of a Porous Material.

作者信息

Fellah Zine El Abiddine, Roncen Rémi, Ongwen Nicholas O, Ogam Erick, Fellah Mohamed, Depollier Claude

机构信息

Laboratory of Mechanics and Acoustics, French National Centre for Scientific Research LMA, CNRS, UMR 7031, Centrale Marseille, Aix-Marseille University CEDEX 20, F-13402 Marseille, France.

French Aerospace Lab, ONERA/Multi-Physics Department for Energy, Toulouse University, F-31055 Toulouse, France.

出版信息

Materials (Basel). 2022 Jan 21;15(3):798. doi: 10.3390/ma15030798.

Abstract

Ultrasound propagation in porous materials involves some higher order physical parameters whose importance depends on the acoustic characteristics of the materials. This article concerns the study of the influence of two parameters recently introduced, namely, the viscous and thermal surfaces, on the acoustic wave reflected by the first interface of a porous material with a rigid structure. These two parameters describe the fluid/structure interactions in a porous medium during the propagation of the acoustic wave in the high-frequency regime. Both viscous and thermal surfaces are involved in Laurent expansion, which is limited to the dynamic tortuosity and compressibility to a higher order and corrects the visco-thermal losses. A sensitivity study is performed on the modulus of the reflection coefficient at the first interface as a function of frequency and on the waveforms reflected by the porous material in the time domain. The results of this study show that highly absorbent porous materials are the most sensitive to viscous and thermal surfaces, which makes the consideration of these two parameters paramount for the characterization of highly absorbent porous materials using the waves reflected from the first interface.

摘要

超声波在多孔材料中的传播涉及一些高阶物理参数,其重要性取决于材料的声学特性。本文关注最近引入的两个参数,即粘性表面和热表面,对具有刚性结构的多孔材料第一界面反射声波的影响研究。这两个参数描述了高频 regime 下声波在多孔介质中传播时流体/结构的相互作用。粘性表面和热表面都参与了洛朗展开,该展开将动态曲折度和可压缩性限制到更高阶,并校正了粘热损耗。对第一界面反射系数的模量随频率的变化以及多孔材料在时域中反射的波形进行了敏感性研究。这项研究的结果表明,高吸收性多孔材料对粘性表面和热表面最为敏感,这使得在利用从第一界面反射的波来表征高吸收性多孔材料时,考虑这两个参数至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8177/8836579/567c7a81b488/materials-15-00798-g001.jpg

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