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Influence of heat transfer on Poiseuille flow of MHD Jeffrey fluid through porous medium with slip boundary conditions

机译:热传递对MHD jeffrey液体流量流动的影响通过多孔介质具有滑动边界条件

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In the current article, we have discussed the Poiseuille flow of an incompressible magnetohydrodynamic Jeffrey fluid between parallel plates through homogeneous porous medium using slip boundary conditions under the effect of heat transfer. The equations governing the fluid flow are modeled in Cartesian coordinate system. The energy equation is considered under the effects viscous dissipation and heat generation. Analytical solutions for the velocity and temperature profiles are obtained. The effects of the various involved parameters on the velocity and temperature profiles are studied and the results are presented through the graphs. It is observed from our analysis that, with increase of slip parameter and pressure gradient increase the velocity. The temperature is an increasing function of heat generation parameter, Brinkman number, thermal slip parameter and non-Newtonian fluid parameter.
机译:在本文中,我们已经讨论了通过均匀多孔介质在热传递的影响下通过均匀多孔介质讨论了通过均相多孔介质之间的不可压缩磁力流体动力学jeffrey流体的Poiseuille流。控制流体流动的方程在笛卡尔坐标系中建模。在粘性耗散和发热的效果下考虑能量方程。获得用于速度和温度型材的分析解。研究了各种涉及参数对速度和温度分布的影响,并通过图表呈现结果。从我们的分析中观察到,随着滑移参数的增加和压力梯度增加速度。温度是发热参数,Brinkman号,热滑移参数和非牛顿流体参数的越来越多的函数。

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