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Waves in magneto-thermoelastic solids under modified Green-Lindsay model

机译:改进的绿色Lindsay模型下磁热弹性固体的波浪

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In this paper, the propagation of time-harmonic plane waves is investigated in an infinite elastic solid material by employing the modified Green-Lindsay (MGL) model of generalized thermoelasticity. It is found that three basic waves consisting of two sets of coupled longitudinal waves and one independent vertically shear-type (SV-type) wave may travel with distinct speeds. The sets of coupled waves are found to be dispersive, attenuating and influenced by the thermoelastic coupling effect. In contrast to the Green-Lindsay (GL) as well as the Lord-Shulman (LS) models, the SV-type wave is not only dispersive in nature but also experiences attenuation. Reflection phenomenon of an incident coupled longitudinal wave from stress-free and thermally insulated boundary surface of a thermoelastic solid half-space is addressed. Using these boundary conditions, the formulae for various reflection coefficients and their respective energy ratios are presented. For a particular model, various graphs are plotted to analyze the behavior of the phase speeds, reflection coefficients and their respective energy ratios. The characteristics of employing the MGL model are discussed by comparing the numerical results obtained for the present model with those obtained in the case of the GL model.
机译:在本文中,通过采用通用热弹性的改性的绿林林(MGL)模型在无限弹性固体材料中研究了时谐波波的传播。发现,由两组耦合的纵波和一个独立的垂直剪切型(SV型)波组成的三个基本波可以以不同的速度行进。发现耦合波的组被热弹性耦合效果分散,衰减和影响。与绿色Lindsay(GL)以及主血管(LS)模型相比,SV型波不仅在大自然中分散,而且还经历衰减。解决了来自热弹性固体半空间的无应力和热绝缘边界表面的入射耦合纵向波的反射现象。使用这些边界条件,提出了各种反射系数的公式及其各自的能量比。对于特定模型,绘制各种图形以分析相速,反射系数及其各自的能量比的行为。通过将本模型获得的数值结果与在GL模型的情况下获得的那些进行比较来讨论采用MGL模型的特征。

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