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Acoustical determination of the parameters governing thermal disslipation in porous media

机译:声学确定控制多孔介质中热耗散的参数

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In this paper, the question of the acoustical determination of macroscopic thermal parameters used to describe heat exchanges in rigid open-cell porous media subjected to acoustical excitations is addressed. The proposed method is based on the measurement of the dynamic bulk modulus of the material, and analytical inverse solutions derived from different semiphenomenological models governing the thermal dissipation of acoustic waves in the material. Three models are considered: (1) Champoux-Allard model [J. Appl. Phys. 20, 1975-1979 (1991)] requiring knowledge of the porosity and thermal characteristic length, (2) Lafarge et al. model [J. Acoust. Soc. Am. 102, 1995-2006 (1997)] using the same parameters and the thermal permeability, and (3) Wilson model [J. Acoust. Soc. Am. 94, 1136-1145 (1993)] that requires two adjusted parameters. Except for the porosity that is obtained from direct measurement, all the other thermal parameters are derived from the analytical inversion of the models. The method is applied to three porous materials-a foam, a glass wool, and a rock wool-with very different thermal properties. It is shown that the method can be used to assess the validity of the descriptive models for a given material. (c) 2008 Acoustical Society of America.
机译:在本文中,解决了宏观热参数的声学确定问题,该宏热参数用于描述受到声激发的刚性开孔多孔介质中的热交换。所提出的方法基于材料动态容积模量的测量,以及基于控制材料中声波散热的不同半现象学模型得出的解析逆解。考虑了三种模型:(1)Champoux-Allard模型[J.应用物理[1975年第20卷,1975-1979(1991)]要求了解孔隙率和热特征长度,(2)Lafarge等。模型[J. co Soc。上午。 102,1995-2006(1997)]使用相同的参数和热导率,以及(3)Wilson模型[J. co Soc。上午。 94,1136-1145(1993)]需要两个调整的参数。除了通过直接测量获得的孔隙率外,所有其他热参数均来自模型的解析反演。该方法应用于三种多孔材料,即泡沫,玻璃棉和岩棉,它们具有非常不同的热性能。结果表明,该方法可用于评估给定材料的描述性模型的有效性。 (c)2008年美国声学学会。

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