A modified Green-Naghdi fractional order model for analyzing thermoelectric MHD

IF 4 3区 工程技术 Q1 MATHEMATICS, INTERDISCIPLINARY APPLICATIONS
Mohamed M. Hendy, Magdy A. Ezzat
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引用次数: 0

Abstract

Purpose

Whereas, the classical Green-Naghdi Type II (GN-II) model struggles to accurately represent the thermo-mechanical behavior of thermoelectric MHD due to its inability to account for the memory effect. A new mathematical model of the GN-II theory incorporates a fractional order of heat transport to address this issue.

Design/methodology/approach

The employment of the matrix exponential method, which forms the basis of the state-space approach in contemporary theory, is central to this strategy. The resulting formulation, together with the Laplace transform techniques, is applied to a variety of problems. Solutions to a thermal shock problem and to a problem of a layer media both without heat sources are obtained. Also, a problem with the distribution of heat sources is considered. The numerical technique is used to achieve the Laplace transform inversion.

Findings

According to the numerical results and its graphs, the influences of the fractional order parameters, figure-of-merit factor, thermoelectric power and Peltier coefficient on the behavior of the field quantities are investigated in the new theory.

Originality/value

The new modeling of thermoelectric MHD has advanced significantly as a result of this work, providing a more thorough and precise tool for forecasting the behavior of these materials under a range of thermal and magnetic conditions.

用于分析热电 MHD 的改进型格林-纳格迪分数阶模型
目的由于经典的格林-纳格迪 II 型(GN-II)模型无法解释记忆效应,因此难以准确表示热电 MHD 的热机械行为。为解决这一问题,GN-II 理论的一个新数学模型纳入了分数阶热传输。由此产生的公式与拉普拉斯变换技术一起被应用于各种问题。我们获得了热冲击问题和无热源层介质问题的解决方案。此外,还考虑了热源分布问题。根据数值结果及其图表,新理论研究了分数阶参数、商数因子、热电功率和珀尔帖系数对场量行为的影响。原创性/价值由于这项工作,热电 MHD 的新建模取得了重大进展,为预测这些材料在一系列热和磁条件下的行为提供了更全面、更精确的工具。
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来源期刊
CiteScore
9.50
自引率
11.90%
发文量
100
审稿时长
6-12 weeks
期刊介绍: The main objective of this international journal is to provide applied mathematicians, engineers and scientists engaged in computer-aided design and research in computational heat transfer and fluid dynamics, whether in academic institutions of industry, with timely and accessible information on the development, refinement and application of computer-based numerical techniques for solving problems in heat and fluid flow. - See more at: http://emeraldgrouppublishing.com/products/journals/journals.htm?id=hff#sthash.Kf80GRt8.dpuf
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