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Exact Solutions of Heat and Mass Transfer with MHD Flow in a Porous Medium under Time Dependent Shear Stress and Temperature

机译:时变剪切应力和温度下多孔介质中MHD流动传热传质的精确解

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This paper aims to study the influence of thermal radiation on unsteady magnetohyrdodynamic (MHD) natural convection flow of an optically thick fluid over a vertical plate embedded in a porous medium with arbitrary shear stress. Combined phenomenon of heat and mass transfer is considered. Closed-form solutions in general form are obtained by using the Laplace transform technique. They are expressed in terms of exponential and complementary error functions. Velocity is expressed as a sum of thermal and mechanical parts. Corresponding limiting solutions are also reduced from the general solutions. It is found that the obtained solutions satisfy all imposed initial and boundary conditions and reduce to some known solutions from the literature as special cases. Analytical results for the pertinent flow parameters are drawn graphically and discussed in detail. It is found that the velocity profiles of fluid decrease with increasing shear stress. The magnetic parameter develops shear resistance which reduces the fluid motion whereas the inverse permeability parameter increases the fluid flow.
机译:本文旨在研究热辐射对嵌在多孔介质中的任意剪切应力的垂直板上方光学厚度的流体的非定常磁流体动力学(MHD)自然对流的影响。考虑传热和传质的结合现象。通过使用拉普拉斯变换技术可以获得一般形式的闭式解。它们用指数和互补误差函数表示。速度表示为热和机械部分的总和。相应的限制解决方案也从一般解决方案中减少了。发现所获得的解满足所有强加的初始条件和边界条件,并且从文献中还原为某些特殊情况的已知解。有关流量参数的分析结果以图形方式绘制并进行了详细讨论。发现随着剪切应力的增加,流体的速度分布减小。磁参数产生抗剪力,这会降低流体的运动,而反渗透率参数会增加流体的流量。

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