Generalized Thermoelastic Heat Conduction Model Involving Three Different Fractional Operators

IF 1.5 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Advances in Materials Science Pub Date : 2023-06-01 DOI:10.2478/adms-2023-0009
Anouar Saidi, A. Yahya, A. Abouelregal, Husam E. Dargail, Ibrahim-Elkhalil Ahmed, Elsiddeg Ali, F. A. Mohammed
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Abstract

Abstract The purpose of this paper is to introduce a new time-fractional heat conduction model with three-phase-lags and three distinct fractional-order derivatives. We investigate the introduced model in the situation of an isotropic and homogeneous solid sphere. The exterior of the sphere is exposed to a thermal shock and a decaying heat generation rate. We recuperate some earlier thermoelasticity models as particular cases from the proposed model. Moreover, the effects of different fractional thermoelastic models and the effect of instant time on the physical variables of the medium are studied. We obtain the numerical solutions for the various physical fields using a numerical Laplace inversion technique. We represent the obtained results graphically and discuss them. Physical views presented in this article may be useful for the design of new materials, bio-heat transfer mechanisms between tissues and other scientific domains.
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包含三种不同分数算子的广义热弹性热传导模型
摘要本文的目的是引入一个新的具有三相滞后和三个不同分数阶导数的时间分数阶热传导模型。我们在各向同性均质实心球的情况下研究了所引入的模型。球体的外部暴露在热冲击和衰减的产热率下。我们从所提出的模型中恢复了一些早期的热弹性模型作为特殊情况。此外,还研究了不同分数阶热弹性模型对介质物理变量的影响以及瞬时时间对介质物理变量的影响。我们利用数值拉普拉斯反演技术得到了各种物理场的数值解。我们用图形表示得到的结果,并对其进行了讨论。本文提出的物理观点可能对新材料的设计,组织间的生物传热机制和其他科学领域有用。
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Advances in Materials Science
Advances in Materials Science MATERIALS SCIENCE, MULTIDISCIPLINARY-
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