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Two-temperature generalized magneto-thermoelastic medium for dual-phase-lag model under the effect of gravity field and hydrostatic initial stress

机译:重力场和静水静应力作用下双相滞后模型的两温广义磁热弹性介质

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Purpose - The dual-phase-lag (DPL) model and Lord-Shulman theory with one relaxation time are applied to study the effect of the gravity field, the magnetic field, and the hydrostatic initial stress on the wave propagation in a two-temperature generalized thermoelastic problem for a medium with an internal heat source that is moving with a constant speed. The paper aims to discuss this issue. Design/methodology/approach - The exact expressions of the considered variables are obtained by using normal mode analysis. Findings - Numerical results for the field quantities are given in the physical domain and illustrated graphically in the absence and presence of the gravity field as well as the magnetic field. Comparisons are made between the results of the two different models with and without temperature dependent properties and for two different values of the hydrostatic initial stress. A comparison is also made between the results of the two different models for two different values of the time. Originality/value - In the present work, the author shall formulate a two-temperature generalized magneto-thermoelastic problem for a medium with temperature dependent properties and with an internal heat source that is moving with a constant speed under the influence of a gravity field and a hydrostatic initial stress. Normal mode analysis is used to obtain the exact expressions for the displacement components, thermodynamic temperature, conductive temperature, and stress components. A comparison is carried out between the considered variables as calculated from the generalized thermoelasticity based on the DPL model and the L-S theory in the absence and presence of a magnetic field as well as a gravity field. Comparisons are also made between the results of the two theories with and without temperature dependent properties and for two different values of hydrostatic initial stress. A comparison is also made between the results of the two different models for two different values of the time.
机译:目的-采用双相滞后(DPL)模型和一次松弛时间的Lord-Shulman理论来研究重力场,磁场和静水初始应力对两温下波传播的影响具有内部热源以恒定速度运动的介质的广义热弹性问题。本文旨在讨论这个问题。设计/方法/方法-所考虑变量的精确表达式是通过使用正常模式分析获得的。发现-场量的数值结果在物理域中给出,并且在不存在和存在重力场以及磁场的情况下以图形方式说明。比较具有和不具有依赖于温度的特性的两个不同模型的结果,以及两个不同静水初始应力值的结果。还针对两个不同的时间值在两个不同模型的结果之间进行了比较。原创性/价值-在目前的工作中,作者应针对具有温度依赖特性且内部热源在重力场和磁场的作用下以恒定速度运动的介质,提出两温广义磁热弹性问题。静水压力。正态分析用于获得位移分量,热力学温度,传导温度和应力分量的精确表达式。在不存在和存在磁场以及重力场的情况下,对根据DPL模型和L-S理论基于广义热弹性计算出的考虑变量进行了比较。在具有和不具有依赖于温度的特性以及两种不同的静水初始应力值的情况下,两种理论的结果也进行了比较。还针对两个不同的时间值在两个不同模型的结果之间进行了比较。

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