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首页> 外文期刊>Applied mathematics and computation >Combined effect of magnetic field and heat absorption on unsteady free convection and heat transfer flow in a micropolar fluid past a semi-infinite moving plate with viscous dissipation using element free Galerkin method
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Combined effect of magnetic field and heat absorption on unsteady free convection and heat transfer flow in a micropolar fluid past a semi-infinite moving plate with viscous dissipation using element free Galerkin method

机译:磁场和热吸收对微极性流体中流过半无限运动板的非稳态自由对流和传热的综合影响,采用无元素Galerkin方法进行粘性耗散

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摘要

The fully developed electrically conducting micropolar fluid flow and heat transfer along a semi-infinite vertical porous moving plate is studied including the effect of viscous heating and in the presence of a magnetic field applied transversely to the direction of the flow. The Darcy-Brinkman-Forchheimer model which includes the effects of boundary and inertia forces is employed. The differential equations governing the problem have been transformed by a similarity transformation into a system of non-dimensional differential equations which are solved numerically by element free Galerkin method. Profiles for velocity, microrotation and temperature are presented for a wide range of plate velocity, viscosity ratio, Darcy number, Forchhimer number, magnetic field parameter, heat absorption parameter and the micropolar parameter. The skin friction and Nusselt numbers at the plates are also shown graphically. The present problem has significant applications in chemical engineering, materials processing, solar porous wafer absorber systems and metallurgy.
机译:研究了沿半无限垂直多孔移动板充分发展的导电微极性流体流动和传热,包括粘性加热的影响以及在垂直于流动方向施加磁场的情况下的情况。采用达西-布林克曼-福希海默模型,该模型包括边界力和惯性力的影响。解决问题的微分方程已通过相似性变换转换为一个无量纲的微分方程组,可通过无元素Galerkin方法对其进行数值求解。给出了板速度,粘度比,达西数,福希默数,磁场参数,吸热参数和微极参数的广泛范围内的速度,微旋转和温度曲线。板上的皮肤摩擦和努塞尔数也以图形显示。当前的问题在化学工程,材料处理,太阳能多孔晶片吸收器系统和冶金学中具有重要的应用。

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