首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >The Effects of Variable Viscosity, Viscous Dissipation and Chemical Reaction on Heat and Mass Transfer Flow of MHD Micropolar Fluid along a Permeable Stretching Sheet in a Non-Darcian Porous Medium
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The Effects of Variable Viscosity, Viscous Dissipation and Chemical Reaction on Heat and Mass Transfer Flow of MHD Micropolar Fluid along a Permeable Stretching Sheet in a Non-Darcian Porous Medium

机译:可变粘度,粘滞耗散和化学反应对非达西多孔介质中MHD微极性流体沿渗透性拉伸片的传热传质的影响

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A numerical model is developed to study the effects of temperature-dependent viscosity on heat and mass transfer flow of magnetohydrodynamic(MHD) micropolar fluids with medium molecular weight along a permeable stretching surface embedded in a non-Darcian porous medium in the presence of viscous dissipation and chemical reaction. The governing boundary equations for momentum, angular momentum (microrotation), and energy and mass transfer are transformed to a set of nonlinear ordinary differential equations by using similarity solutions which are then solved numerically by shooting technique. A comparison between the analytical and the numerical solutions has been included. The effects of the various physical parameters entering into the problem on velocity, microrotation, temperature and concentration profiles are presented graphically. Finally, the effects of pertinent parameters on local skin-friction coefficient, local Nusselt number and local Sherwood number are also presented graphically. One important observation is that for some kinds of mixtures (e.g., H2, air) with light and medium molecular weight, the magnetic field and temperature-dependent viscosity effects play a significant role and should be taken into consideration as well.
机译:建立了一个数值模型,以研究温度依赖性粘度对中等分子量的磁流体动力学(MHD)微极性流体在黏性耗散存在下沿非达西多孔介质中嵌入的可渗透拉伸面的中等分子量的传热和传质流的影响。和化学反应。利用相似性解将动量,角动量(微旋转)以及能量和质量传递的控制边界方程转换为一组非线性常微分方程,然后通过射击技术对其进行数值求解。包括了解析解和数值解之间的比较。以图形方式显示了进入问题的各种物理参数对速度,微旋转,温度和浓度曲线的影响。最后,还以图形方式显示了相关参数对局部皮​​肤摩擦系数,局部Nusselt数和局部Sherwood数的影响。一个重要的观察结果是,对于某些分子量中等或中等的混合物(例如H2,空气),磁场和温度相关的粘度效应起着重要作用,也应予以考虑。

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