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Nonlinear Transient Thermal Modeling and Analysis of a Convective-Radiative Fin with Functionally Graded Material in a Magnetic Environment

机译:磁环境中功能梯度材料对流辐射翅片的非线性瞬态热建立与分析

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Nonlinear transient thermal analysis of a convective-radiative fin with functionally graded materials (FGMs) under the influence of magnetic field is presented in this study. The developed nonlinear thermal models of linear, quadratic, and exponential variation of thermal conductivity are solved approximately and analytically using the differential transformation method (DTM). In order to verify the accuracies of the nonlinear solutions, exact analytical solutions are also developed with the aids of Bessel, Legendre, and modified Bessel functions. Good agreements are established between the exact and the approximate analytical solutions. In the parametric studies, effects of heat enhancement capacity of fin with functionally graded material as compared to fin with homogeneous material are investigated. Also, influence of the Lorentz force and radiative heat transfer on the thermal performance of the fin are analyzed. From the results, it is shown that increase in radiative and magnetic field parameters as well as the in-homogeneity index improve the thermal performance of the fin. Also, the transient responses reveal that the FGM fin with quadratic-law and exponential-law function shows the slowest and fasted thermal responses, respectively. This study will provide a very good platform for the design and optimization of an improved heat transfer enhancement in thermal systems, where the surrounding fluid is influenced by a magnetic field.
机译:本研究介绍了磁场影响下具有功能梯度材料(FGM)的对流辐射翅片的非线性瞬态热分析。使用差分变换方法(DTM)求解和分析导热率的线性,二次和指数变化的开发的非线性热模型。为了验证非线性解决方案的准确性,还使用贝塞尔,Legendre和改进的贝塞尔功能的辅助功能开发了精确的分析解决方案。在确切和近似分析解决方案之间建立了良好的协议。在参数研究中,研究了与具有均匀材料的翅片相比,用功能梯度材料的翅片的热增强能力的影响。而且,分析了洛伦兹力和辐射传热对翅片热性能的影响。从结果中,显示辐射和磁场参数的增加以及均匀性指数提高了翅片的热性能。此外,瞬态响应表明,具有二次法律和指数 - 法函数的FGM鳍片分别显示出最慢和禁食的热响应。该研究将提供一个非常好的平台,用于设计和优化热系统中的改进的热传递增强,其中周围流体受磁场的影响。

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