首页> 外文期刊>Journal of engineering physics and thermophysics >RADIATION AND THERMAL DIFFUSION EFFECTS ON AN UNSTEADY MHD FREE CONVECTION MASS-TRANSFER FLOW PAST AN INFINITE VERTICAL POROUS PLATE WITH THE HALL CURRENT AND A HEAT SOURCE
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RADIATION AND THERMAL DIFFUSION EFFECTS ON AN UNSTEADY MHD FREE CONVECTION MASS-TRANSFER FLOW PAST AN INFINITE VERTICAL POROUS PLATE WITH THE HALL CURRENT AND A HEAT SOURCE

机译:MHD自由对流传热流的辐射和热扩散效应,具有霍尔电流和热源的无限垂直多孔板

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摘要

An analysis is performed to study the effects of radiation and thermal diffusion on an unsteady MHD free convection heat- and mass-transfer flow of an incompressible, electrically conducting, viscous fluid past an infinite vertical porous plate with the Hall current and a heat source. The flow is considered under the influence of a constant suction velocity and a uniform magnetic field applied normally to the flow. The dimensionless governing equations are solved numerically by the Galerkin finite element method. The effects of the flow parameters on the primary and secondary velocities, temperature, species concentration, shearing stresses, Nusselt number, and Sherwood number are calculated and presented in figures and tables. The results obtained show that a decrease in the temperature boundary layer thickness occurs when the Prandtl number and radiation parameter are increased and an increase in the Schmidt number leads to a decrease in the concentration boundary layer thickness.
机译:进行了分析,以研究辐射和热扩散对通过霍尔电流和热源通过无限垂直多孔板的不可压缩的导电粘性流体的不稳定MHD自由对流传热和传质的影响。在恒定的抽吸速度和正常情况下对流施加的均匀磁场的影响下考虑流。无量纲控制方程通过Galerkin有限元方法进行数值求解。计算了流动参数对初次和二次速度,温度,物质浓度,剪切应力,努塞尔数和舍伍德数的影响,并在图表中显示。获得的结果表明,当增加Prandtl数和辐射参数时,温度边界层厚度减小,而Schmidt数的增加导致浓度边界层厚度减小。

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