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Study of magnetohydrodynamic pulsatile flow in a constricted channel

机译:狭窄通道中的磁流体动力脉动流研究

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The present work reports the study of steady and pulsatile flows of an electrically conducting fluid in a differently shaped locally constricted channel in presence of an external transverse uniform magnetic field. The governing nonlinear magnetohydrodynamic equations simplified for low conducting fluids are solved numerically by finite difference method using stream function-vorticity formulation. The analysis reveals that the flow separation region is diminished with increasing values of magnetic parameter. It is noticed that the increase in the magnetic field strength results in the progressive flattening of axial velocity. The variations of wall shear stress with increasing values of the magnetic parameter are shown for both steady and pulsatile flow conditions. The streamline and vorticity distributions in magnetohydrodynamic flow are also shown graphically and discussed.
机译:本工作报告了在存在外部横向均匀磁场的情况下,在形状不同的局部收缩通道中导电流体的稳定和脉动流动的研究。利用流函数-涡度公式,通过有限差分法数值求解了低导电流体简化的控制非线性磁流体动力学方程。分析表明,随着磁参数值的增加,流动分离区域减小。注意到磁场强度的增加导致轴向速度逐渐变平。示出了稳态和脉动流动条件下壁切应力随磁参数值的增加而变化。磁流体动力流中的流线分布和涡度分布也以图形方式显示和讨论。

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