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Magnetohydrodynamics flow of a nanofluid driven by a stretching/shrinking sheet with suction

机译:纳米流体的磁流体动力学流动该流体由具有吸力的拉伸/收缩片驱动

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摘要

The present paper investigates the effect of a mathematical model describing the aforementioned process in which the ambient nanofluid in the presence of suction/injection and magnetic field are taken into consideration. The flow is induced by an infinite elastic sheet which is stretched along its own plane. The stretching/shrinking of the sheet is assumed to be proportional to the distance from the slit. The governing equations are reduced to a nonlinear ordinary differential equation by means of similarity transformation. The consequential nonlinear equation is solved analytically. Consequences show that the flow field can be divided into a near-field region and a far-field region. Suction on the surface plays an important role in the flow development in the near-field whereas the far-field is responsible mainly by stretching. The electromagnetic effect plays exactly the same role as the MHD, which is to reduce the horizontal flow resulting from stretching. It is shown that the behavior of the fluid flow changes with the change of the nanoparticles type. The present study throws light on the analytical solution of a class of laminar boundary layer equations arising in the stretching/shrinking sheet problem.
机译:本文研究描述上述过程的数学模型的效果,其中考虑了在存在吸入/注入和磁场的情况下周围的纳米流体。流动由沿其自身平面拉伸的无限弹性片材引起。假定片材的拉伸/收缩与距狭缝的距离成比例。通过相似变换将控制方程简化为非线性常微分方程。结果非线性方程被解析求解。结果表明,流场可分为近场区域和远场区域。表面的吸力在近场的流动发展中起着重要的作用,而远场的作用主要在于拉伸。电磁效应起着与MHD完全相同的作用,即减少因拉伸而产生的水平流动。结果表明,流体流动的行为随纳米颗粒类型的变化而变化。本研究重点介绍了在拉伸/收缩片材问题中产生的一类层流边界层方程的解析解。

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