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Steady state heat transfer analysis in a rectangular moving porous fin

机译:矩形移动多孔翅片中的稳态传热分析

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摘要

In this article, the variation of temperature distribution and fin efficiency in a porous moving fin of rectangular profile is studied. This study is performed using Darcy's model to formulate the governing heat transfer differential equation. The approximate analytical solution is generated using the variational iteration method (VIM). The power series solution is validated by benchmarking it against the numerical solution obtained by applying the Runge-Kutta fourth order method. A good agreement between the analytical and numerical results is observed. The effects of porosity parameter, Peclet number and other thermo-physical parameters, such as the power index of heat transfer coefficient, convective-conductive parameter, radiative-conductive parameter, thermal conductivity gradient and non-dimensional ambient temperature on non-dimensional temperature are also studied and explained. The results indicate that the fin rapidly dissipates heat to the ambient temperature with an increase in the Peclet number, convection-radiation parameters and the porosity parameter.
机译:本文研究了矩形轮廓多孔运动翅片的温度分布和翅片效率的变化。本研究使用达西模型来制定控制传热微分方程。使用变分迭代法 (VIM) 生成近似解析解。通过将幂级数解与应用Runge-Kutta四阶方法获得的数值解进行基准测试来验证该幂级数解。观察到分析结果和数值结果之间有很好的一致性。研究并解释了孔隙率参数、Peclet数等热物理参数,如传热系数功率指数、对流传导参数、辐射传导参数、热导率梯度和无量纲环境温度对无量纲温度的影响。结果表明,随着Peclet数、对流辐射参数和孔隙率参数的增加,翅片将热量快速散发至环境温度。

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