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Numerical investigation of cross-flow around a circular cylinder at a low-Reynolds number flow under an electromagnetic force

机译:电磁力作用下低雷诺数圆柱绕流的数值研究

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摘要

The effect of the electromagnetic force (or Lorentz force) on the flow behavior around a circular cylinder is investigated by computation. Two-dimensional unsteady flow computation for Re=10{sup}2 is carried out using a numerical method of finite difference approximation in a curvilinear body-fitted coordinate system by solving the momentum equations including the Lorentz force as a body force. The effect of spatial variations of the Lorentz forcing region and forcing direction along the cylinder circumference is investigated. The numerical results show that the Lorentz force can effectively suppress the flow separation and oscillation of the lift force of circular cylinder cross-flow, leading to reduction of drag.
机译:通过计算研究了电磁力(或洛伦兹力)对圆柱体周围流动行为的影响。 Re = 10 {sup} 2的二维非定常流动计算是通过使用曲线有限的近似方法,通过拟合包括洛伦兹力作为体力的动量方程,在曲线拟合人体坐标系中进行的。研究了洛伦兹受力区域和受力方向沿汽缸圆周的空间变化的影响。数值结果表明,洛伦兹力可以有效地抑制圆柱错流的流分离和提升力的振荡,从而减小阻力。

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