首页> 外文期刊>Journal of Naval Architecture and Marine Engineering >Thermal Radiation Effects on MHD Free Convection Flow Past an Impulsively Started Vertical Plate with Variable Surface Temperature and Concentration
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Thermal Radiation Effects on MHD Free Convection Flow Past an Impulsively Started Vertical Plate with Variable Surface Temperature and Concentration

机译:热辐射对经过可变表面温度和浓度的脉冲启动垂直平板的MHD自由对流的影响

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Thermal radiation effects on hydromagnetic free convection flow past an impulsively started vertical plate with variable surface temperature and concentration is analyzed, by taking into account the heat due to viscous dissipation. The governing boundary layer equations of the flow field are solved by an implicit finite difference method of Crank-Nicholson type. A parametric study is performed to illustrate the influence of radiation parameter, magnetic parameter, Grashof number, Prandtl number, Eckert number on the velocity, temperature and concentration profiles. Also, the local and average skin-friction coefficient, Nusselt number and Sherwood number are presented graphically. The numerical results reveal that an increase in thermal radiation reduces both the velocity and temperature in the boundary layer and a rise in viscous dissipation accelerates the flow.
机译:通过考虑由于粘性耗散引起的热量,分析了热辐射对经过脉冲启动的垂直板的水磁自由对流的影响,该垂直板具有可变的表面温度和浓度。用Crank-Nicholson型隐式有限差分法求解流场的控制边界层方程。进行了参数研究,以说明辐射参数,磁参数,Grashof数,Prandtl数,Eckert数对速度,温度和浓度分布的影响。同样,局部和平均皮肤摩擦系数,努塞尔数和舍伍德数也以图形方式显示。数值结果表明,热辐射的增加会降低边界层的速度和温度,而粘性耗散的增加会加速流动。

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