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Generalized thermoelastic infinite transversely isotropic body with a cylindrical cavity due to moving heat source and harmonically varying heat

机译:由于移动的热源和热量的谐波变化,具有圆柱形空腔的广义热弹性无限横观各向同性体

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摘要

In this paper, the induced temperature, displacement, and stress fields in an infinite transversely isotropic unbounded medium with cylindrical cavity due to a moving heat source and harmonically varying heat are investigated. This problem is solved in the context of the linear theory of generalized thermoelasticity with dual phase lag model. The governing equations are expressed in Laplace transform domain. Based on Fourier series expansion technique the inversion of Laplace transform is done numerically. The numerical estimates of the displacement, temperature and stress are obtained and presented graphically. The theories of coupled thermoelasticity, generalized thermoelasticity with one relaxation time, and thermoelasticity without energy dissipation can extracted as special cases. Some comparisons have been shown in figures to present the effect of the heat source, dual phase lags parameters and the angular frequency of thermal vibration on all the studied fields.
机译:在本文中,研究了由于热源的移动和热量的谐波变化而引起的无限横向各向同性无穷大介质在圆柱腔中的诱导温度,位移和应力场。在具有双相滞后模型的广义热弹性线性理论的背景下解决了这个问题。控制方程在拉普拉斯变换域中表示。基于傅立叶级数展开技术,对拉普拉斯变换进行了数值反演。获得位移,温度和应力的数值估计值,并以图形方式显示。在特殊情况下,可以提取耦合热弹性,具有一个松弛时间的广义热弹性以及没有能量耗散的热弹性的理论。在图中进行了一些比较,以显示热源,双相滞后参数和热振动角频率对所有研究领域的影响。

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