THE STUDY OF MAGNETO HYDRODYNAMIC FREE CONVECTIVE FLOW AND HEAT TRANSFER IN A POROUS MEDIUM WITH HEAT GENERATION, RADIATION ABSORPTION AND CHEMICAL REACTION

George Buzuzi
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引用次数: 1

Abstract

Abstract: A study for the problem of unsteady convection flow of a viscous incompressible electrically conducting micro-polar fluid in a porous medium past an inclined moving porous plate in the presence of a transverse magnetic field, heat generation, radiation absorption, chemical reaction and suction is presented. The porous plate moves with a constant velocity and the stream velocity is assumed to follow an exponentially increasing perturbation law. The porous plate absorbs the polar fluid with a suction velocity which varies with time. The dimensionless governing equations are solved analytically by perturbation technique. The numerical results are also compared with corresponding Newtonian fluid flow problems. The effects of various parameters on the velocity, micro-rotation, temperature, concentration fields, skin friction coefficient, couple stress coefficient, Nusselt number and Sherwood number are presented in graphical and tabular form.
多孔介质中产生热量、辐射吸收和化学反应的磁流体力学自由对流和换热研究
摘要研究了多孔介质中粘性不可压缩导电微极流体在横向磁场、生热、辐射吸收、化学反应和吸力作用下通过倾斜移动多孔板的非定常对流流动问题。多孔板以恒定速度运动,假定水流速度遵循指数递增的微扰规律。多孔板以随时间变化的吸力速度吸收极性流体。用摄动法解析求解了无量纲控制方程。数值结果也与相应的牛顿流体流动问题进行了比较。以图表形式给出了各参数对速度、微旋转、温度、浓度场、表面摩擦系数、耦合应力系数、努塞尔数和舍伍德数的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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