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Effects of Hall Current on MHD Boundary Layer Second-Order Viscoelastic Fluid Flow Induced by a Continuous Surface with Heat Transfer

机译:霍尔电流对具有传热连续表面的MHD边界层二阶粘弹性流体流动的影响

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Effects of Hall current on heat transfer and magnetohydrodynamic (MHD) boundary layer flow induced by a continuous surface in a parallel free stream of a second-order viscoelastic fluid are studied for uniform suction/injection by taking viscous dissipation into account. Complex nonsimilar solutions to the stream function and temperature are developed by means of an elegant technique, known as homotopy analysis method (HAM). Convergence of the solutions is ensured with the help of -curves. Graphical and tabular results for the effects of Hall current reveal that it has a significant influence on: complex velocity, complex temperature, magnitude of the shear stress at the surface, magnitude of the rate of heat transfer at the surface and on boundary layer thickness.
机译:通过考虑粘性耗散,研究了霍尔电流对二阶粘弹性流体平行自由流中连续表面诱导的传热和磁流体动力学(MHD)边界层流动的影响,以实现均匀的吸入/注入。通过一种称为同位分析方法(HAM)的优雅技术,可以开发出复杂的非相似流函数和温度解。 -curves的帮助确保了解决方案的收敛性。霍尔电流影响的图形和表格结果表明,它对以下各项具有显着影响:复数速度,复数温度,表面剪切应力的大小,表面传热速率的大小以及边界层的厚度。

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