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On wave propagation in a random micropolar thermoelastic medium, second moments, and associated Green's tensor

机译:关于在随机微极性热弹性介质中的波传播,第二矩和相关的格林张量

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摘要

The couple stress theory developed by Eringen comprises granular materials as also composite fibrous materials. As such, micropolar materials present an inclusive model of composite materials. This article endeavors to study aspects of wave propagation in a random weakly thermal micropolar elastic medium. The smooth perturbation technique has been employed. The classical thermoelasticity has been used. Six different types of waves have been observed to propagate in the random interacting medium. Dispersion equations have been derived. The effects due to random variations of micropolar elastic and thermal parameters have been observed. Change of phase speed occurs on account of randomness. Attenuation coefficients for high-frequency waves have been computed. Second moment properties have been discussed with application to wave propagation in the random micropolar elastic medium. 36+1 components of the associated Green's tensor have been computed. Integrals involving correlation functions have been transformed to radial forms. A special type of correlation function has been used to approximately measure effects of random variations of parameters.
机译:Eringen开发的偶应力理论包括粒状材料以及复合纤维材料。这样,微极性材料呈现出复合材料的包容性模型。本文致力于研究随机弱热微极性弹性介质中波的传播。已经采用了平滑摄动技术。使用了经典的热弹性。已经观察到六种不同类型的波在随机相互作用的介质中传播。已经得出了色散方程。已经观察到由于微极弹性和热参数的随机变化而产生的影响。相速度的变化由于随机性而发生。已经计算出高频波的衰减系数。已经讨论了第二矩特性,并将其应用于随机微极性弹性介质中的波传播。已计算了相关格林张量的36 + 1个分量。涉及相关函数的积分已转换为径向形式。一种特殊类型的相关函数已用于近似测量参数随机变化的影响。

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