首页> 外文期刊>Indian Journal of Pure & Applied Physics >Hall and ion-slip effects on the unsteady MHD mixed convection of Cu-water nanofluid over a vertical stretching plate with convective heat flux
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Hall and ion-slip effects on the unsteady MHD mixed convection of Cu-water nanofluid over a vertical stretching plate with convective heat flux

机译:霍尔和离子滑移对具有垂直对流热流的垂直拉伸板上Cu-水纳米流体非稳态MHD混合对流的影响

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The problem of unsteady MHD mixed convective flow of a Cu-water nanofluid over a vertical convectively heated plate has been analyzed. The effects of Hall and ion-slip currents have also been taken into consideration. The governing nonlinear partial differential equations have been reduced to a system of nonlinear coupled similarity equations. The resulting similarity equations have been solved numerically to obtain the axial velocity, transverse velocity and temperature in the corresponding boundary layers. It has been found that the variations of the Hall and ion-slip parameters can remarkably affect the velocity and temperature distributions of the nanofluid. Further, the transfer characteristics of the axial velocity, the transverse velocity and the temperature of Cu-water nanofluid under various values of unsteadiness parameter, magnetic parameter, the boundary convection parameter and the mixed convection parameter have been described and discussed, respectively.
机译:分析了Cu-水纳米流体在垂直对流加热板上不稳定的MHD混合对流问题。还考虑了霍尔电流和离子滑移电流的影响。控制非线性偏微分方程已简化为非线性耦合相似性方程组。对所得的相似性方程进行数值求解,以获得相应边界层中的轴向速度,横向速度和温度。已经发现,霍尔和离子滑移参数的变化会显着影响纳米流体的速度和温度分布。此外,分别描述和讨论了在不稳定参数,磁参数,边界对流参数和混合对流参数的各种值下,铜水纳米流体的轴向速度,横向速度和温度的传递特性。

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