首页> 外文期刊>Communications in Nonlinear Science and Numerical Simulation >Heat and mass transfer in MHD non-Darcian flow of a micropolar fluid over a stretching sheet embedded in a porous media with non-uniform heat source and thermal radiation
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Heat and mass transfer in MHD non-Darcian flow of a micropolar fluid over a stretching sheet embedded in a porous media with non-uniform heat source and thermal radiation

机译:在非均匀热源和热辐射作用下嵌入多孔介质中的拉伸片材上,微极性流体在MHD非达西流体中的传热和传质

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摘要

A mathematical analysis has been carried out to study magnetohydrodynamic boundary layer flow, heat and mass transfer characteristic on steady two-dimensional flow of a micropolar fluid over a stretching sheet embedded in a non-Darcian porous medium with uniform magnetic field. Momentum boundary layer equation takes into account of transverse magnetic field whereas energy equation takes into account of Ohmic dissipation due to transverse magnetic field, thermal radiation and non-uniform source effects. An analysis has been performed for heating process namely the prescribed wall heat flux (PHF case). The governing system of partial differential equations is first transformed into a system of non-linear ordinary differential equations using similarity transformation. The transformed equations are non-linear coupled differential equations which are then linearized by quasi-linearization method and solved very efficiently by finite-difference method. Favorable comparisons with previously published work on various special cases of the problem are obtained. The effects of various physical parameters on velocity, temperature, concentration distributions are presented graphically and in tabular form.
机译:已经进行了数学分析以研究微极性流体在埋入具有均匀磁场的非达西多孔介质中的拉伸片材上的稳定二维二维流动中的磁流体动力学边界层流动,传热和传质特性。动量边界层方程考虑了横向磁场,而能量方程考虑了由于横向磁场,热辐射和非均匀源效应引起的欧姆耗散。已经对加热过程即规定的壁热通量(PHF情况)进行了分析。首先使用相似性变换将偏微分方程的控制系统转换为非线性常微分方程组。变换后的方程是非线性耦合微分方程,然后通过准线性化方法将其线性化,并通过有限差分法非常有效地求解。与以前发表的有关该问题的各种特殊情况的工作进行了比较。各种物理参数对速度,温度,浓度分布的影响以图形和表格形式呈现。

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