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NUMERICAL SIMULATION OF THE LATERAL MIGRATION OF A NEUTRALLY BUOYANT PARTICLE IN 2D POISEUILLE FLOW

机译:二维Poiseuille流动中性浮质颗粒横向迁移的数值模拟。

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摘要

The lateral migration of a neutrally buoyant rigid particle suspended in Poiseuille flow was studied using two-dimensional numerical simulations with Reynolds number (Re) ranging from 10 to 1000. A fractional step method and an immersed boundary method were used to analyze the motion of the particle and the lateral force exerted on it. Computation of the particle trajectories showed that suspended particles asymptotically approach a single equilibrium lateral position, the location of which depends on particle size and Re. As Re increases, the equilibrium position moves slightly towards the channel wall at first, then shifts towards the channel centerline. At low Re, the equilibrium positions are closer to the channel centerline for larger particles; at higher Re, equilibrium positions become almost insensitive to particle size.
机译:使用二维数值模拟研究了悬浮在Poiseuille流中的中性浮力刚性颗粒的横向迁移,雷诺数(Re)范围为10到1000。采用分步法和浸入边界法分析了水流的运动。粒子和施加在其上的横向力。粒子轨迹的计算表明,悬浮粒子渐近地接近单个平衡侧向位置,其位置取决于粒径和Re。随着Re的增加,平衡位置首先会稍微向通道壁移动,然后向通道中心线移动。在低Re处,较大颗粒的平衡位置更靠近通道中心线。在较高的Re下,平衡位置几乎对粒度不敏感。

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  • 来源
    《Technology Reports of Kansai University》 |2016年第58期|1-8|共8页
  • 作者单位

    Department of Mechanical and Intellectual Systems Engineering, University of Toyama, Toyama 930-8555, Japan;

    Department of Pure and Applied Physics, Kansai University, Suita, Osaka 564-8680, Japan;

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  • 正文语种 eng
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