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Viscous dissipation and Joule heating effects on MHD-free convection from a vertical plate with power-law variation in surface temperature in the presence of Hall and ion-slip currents

机译:在存在霍尔电流和离子滑移电流的情况下,具有表面温度的幂律变化的垂直板的粘滞耗散和焦耳热对无MHD对流的影响

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摘要

An analysis is presented to study the effects of viscous dissipation and Joule heating on MHD-free convection flow past a semi-infinite vertical flat plate in the presence of the combined effect of Hall and ion-slip currents for the case of power-law variation of the wall temperature. The fluid is permeated by a strong transverse magnetic field imposed perpendicularly to the plate on the assumption of a small magnetic Reynolds number. The governing differential equations are transformed by introducing proper non-similarity variables and solved numerically. The effects of various parameters on the velocity and temperature profiles as well as the local wall shear stresses and the local Nusselt number are presented graphically and in tabular form. It is found that the magnetic field acts as a retarding force on the tangential flow but has a propelling effect on the induced lateral flow. The skin-friction factor for the tangential flow and the local Nusselt number decrease but the skin-friction factor for the lateral flow increases as the magnetic field increases. The skin-friction factor for the tangential and lateral flows are increased while the local Nusselt number is decreased if the effect of Viscous dissipation, Joule heating and heat generation are considered. The opposite trend was observed as the temperature power coefficient n is increased. Also, the skin-friction factor for the tangential flow and the local Nusselt number are increased due to the Hall and ion-slip currents, whereas the skin-friction factor for the tangential flow increases when Hall values increase to one and decreases for values of Hall greater than one, but reduces by rising ion-slip values.
机译:提出了一种分析方法,以研究在幂律变化的情况下,在霍尔和离子滑移电流共同作用下,粘性耗散和焦耳热对流经半无限垂直平板的无MHD对流的影响壁温假设雷诺数较小,则垂直于平板的强横向磁场会渗透流体。通过引入适当的非相似变量来转换控制微分方程并进行数值求解。以图形和表格形式显示了各种参数对速度和温度分布以及局部壁切应力和局部Nusselt数的影响。已经发现,磁场在切向流上起到了阻碍作用,但对感应的侧向流有推动作用。随着磁场的增加,切向流的皮肤摩擦系数和局部Nusselt数减小,而横向流的皮肤摩擦系数增大。如果考虑粘性耗散,焦耳热和生热的影响,则切向和侧向流动的皮肤摩擦系数会增加,而局部Nusselt数会减少。随着温度功率系数n的增加,观察到相反的趋势。此外,由于霍尔电流和离子滑移电流,切向流的皮肤摩擦系数和局部Nusselt数增加,而霍尔值增加到1时,切向流的皮肤摩擦系数增加,而当霍尔值增大时,切向流的皮肤摩擦系数减小。霍尔大于1,但随着离子滑移值的增加而减小。

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