Effects of thermophoresis, variable viscosity and thermal conductivity on free convective heat and mass transfer of non-darcian MHD dissipative Casson fluid flow with suction and nth order of chemical reaction

I.L. Animasaun
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引用次数: 177

Abstract

This present study focuses on the effects of thermophoresis, Dufour, temperature dependent thermal conductivity and viscosity of an incompressible electrically conducting Casson fluid flow along a vertical porous plate in the presence of viscous dissipation, nth order chemical reaction and suction. It is assumed that the relationship between the flow rate and pressure drop as the fluid flows through a porous medium is non-linear. Similarity transformations are used to convert the governing equations to a system of nonlinear ordinary coupled differential equations and the numerical solutions for the velocity, temperature and concentration profiles are obtained using shooting method along with Runge-Kutta Gill and Quadratic interpolation (Muller’s scheme). The behaviour of dimensionless velocity, temperature and concentration within the boundary layer has been studied using different values of Prandtl number, Casson parameter, thermophoretic parameter, temperature dependent viscosity, temperature dependent thermal conductivity, Magnetic parameter, local Forchheimer parameter, and local Darcy parameter. The flow controlling parameters are found to have a profound effect on the resulting flow profiles except in some few cases i.e. effect of thermophoretic parameter τ over velocity and temperature profiles of fluids with constant viscosity and thermal conductivity (ξ=ε=0). The local skin friction, Nusselt number and Sherwood number for some cases are also presented.

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热驱、变粘度和导热系数对非达希MHD耗散卡森流体吸力流动和n级化学反应自由对流传热传质的影响
本文主要研究了在粘性耗散、n级化学反应和吸力作用下,不可压缩导电卡森流体沿垂直多孔板流动的热电泳、杜弗尔、温度相关导热系数和粘度的影响。假定流体在多孔介质中流动时的流量与压降之间的关系是非线性的。采用相似变换将控制方程转化为非线性常耦合微分方程组,并采用射击法、龙格-库塔-吉尔法和二次插值法(穆勒格式)得到了速度、温度和浓度分布的数值解。利用不同的普朗特数、卡森参数、热析参数、温度相关粘度、温度相关导热系数、磁性参数、局部Forchheimer参数和局部Darcy参数,研究了边界层内无量纲速度、温度和浓度的行为。发现流动控制参数对所得到的流动曲线有深远的影响,但在少数情况下除外,即热泳参数τ对粘度和导热系数恒定的流体的速度和温度曲线的影响(ξ=ε=0)。给出了局部皮肤摩擦、努塞尔数和舍伍德数。
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