首页> 外文期刊>Journal of Heat Transfer >Entropy Generation Analysis in Nonlinear Convection Flow of Thermally Stratified Fluid in Saturated Porous Medium With Convective Boundary Condition
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Entropy Generation Analysis in Nonlinear Convection Flow of Thermally Stratified Fluid in Saturated Porous Medium With Convective Boundary Condition

机译:对流边界条件下饱和多孔介质中热分层流体非线性对流的熵产生分析

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This article emphasizes the significance of entropy generation analysis and nonlinear temperature density relation on thermally stratified viscous fluid flow over a vertical plate embedded in a porous medium with a thermal dispersion effect. In addition, the convective surface boundary condition is taken into an account. By using the suitable transformations, the governing flow equations in dimensional form are converted into set of nondimensional partial differential equations. Then the local similarity and nonsimilarity procedures are applied to transform the set of nondimensional partial differential equations into set of ordinary differential equations and then the resulting system of equations are solved by Chebyshev spectral collocation method along with the successive linearization. The effect of pertinent parameters, namely, Biot number, mixed convection parameter, and thermal dispersion on velocity, temperature, entropy generation rate, and heat transfer rate are displayed graphically and the salient features are explored in detail.
机译:本文强调了熵产生分析和非线性温度密度关系对热分层粘性流体在垂直板中的热扩散效应的重要性,该垂直板嵌在多孔介质中。另外,还考虑了对流表面边界条件。通过使用适当的变换,将维形式的控制流方程转换为一组无维偏微分方程。然后应用局部相似性和非相似性过程将无量纲偏微分方程组转换为一组常微分方程组,然后用切比雪夫谱配点法和连续线性化对所得方程组进行求解。以图形方式显示了相关参数(比奥数,混合对流参数和热扩散)对速度,温度,熵产生速率和传热速率的影响,并详细探讨了其显着特征。

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