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Unsteady Magnetohydrodynamics Micropolar Fluid In Boundary Layer Flow Past A Sphere Influenced By Magnetic Fluid

机译:边界层中的非稳态磁力流体动力学微极流体通过磁流体影响的球体

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Research about fluid flow was very interesting because have a lot of advantages and it can be applied in many aspects of life. The study on fluid flow which is now widely studied is on magnetohydrodynamic (MHD). Magnetohydrodynamic is a conductive and electrical in a magnetic field. This paper considers the effect of unsteady magnetic fields on the flow of magnetohydrodynamic fluid on the boundary layer that flows past a sphere in micropolar fluid influenced by magnetic field. Our approach is as follows. First, we construct a mathematical model and then the system of equations obtained will be solved numerically using the Keller-Box scheme. Then the system is simulated to assess its effect on the fluid flow velocity profile and the profile of microrotation particles. The result of this research indicates, that when the magnetic parameters increase, then velocity profile increases. If material parameters increase, then velocity profile decreases and magnetic parameters increase for n= 0. For n= 0.5, if magnetic parameters increase, then microrotation profile decreases.
机译:关于流体流动的研究非常有趣,因为有很多优点,它可以应用于生活的许多方面。现在广泛研究的流体流动的研究是磁性流动动力学(MHD)。磁力流体动力学是磁场中的导电和电气。本文考虑了非稳态磁场对由磁场影响的微柱液中的边界层上的磁性流动流体流动的影响。我们的方法如下。首先,我们构造一个数学模型,然后使用凯勒盒方案在数值上进行数字解决的等式系统。然后模拟系统以评估其对流体流速曲线和微量术颗粒的轮廓的影响。该研究的结果表明,当磁参数增加时,速度曲线增加。如果材料参数增加,则速度分布减小,并且n = 0.对于n = 0.5,如果磁性参数增加,则微型曲线曲线减小。

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