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Numerical simulations of three-dimensional MHD stagnation-point flow of a micropolar fluid

机译:微极性流体的3维MHD驻点流的数值模拟

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In this paper the steady three-dimensional stagnation-point flow of an incompressible, homogeneous, electrically conducting micropolar fluid over a flat plate is numerically investigated. The fluid is permeated by a uniform external magnetic field H_0. The effects of the magnetic field on the velocity and on the microrotation profiles are presented graphically and discussed. The results obtained indicate that, the thickness of the boundary layer decreases when the magnetic field increases. Moreover H_0 tends to prevent the occurrence of the reverse flow and of the reverse microrotation.
机译:本文对平板上不可压缩,均匀,导电的微极性流体的三维三维停滞点流动进行了数值研究。流体被均匀的外部磁场H_0渗透。用图形表示并讨论了磁场对速度和微旋转轮廓的影响。所得结果表明,当磁场增加时,边界层的厚度减小。而且,H_0趋向于防止反向流动和反向微旋转的发生。

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