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Inertial migration of neutrally buoyant particles in a square duct: An investigation of multiple equilibrium positions

机译:方管中性浮力颗粒的惯性迁移:多个平衡位置的研究

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Inertial migration of neutrally buoyant particles in a square duct has been investigated by numerical simulation in the range of Reynolds numbers from 100 to 1000. Particles migrate to one of a small number of equilibrium positions in the cross-sectional plane, located near a corner or at the center of an edge. In dilute suspensions, trains of particles are formed along the axis of the flow, near the planar equilibrium positions of single particles. At high Reynolds numbers (Re >= 750), we observe particles in an inner region near the center of the duct. We present numerical evidence that closely spaced pairs of particles can migrate to the center at high Reynolds number. (C) 2006 American Institute of Physics.
机译:已通过数值模拟研究了雷管数在100到1000范围内的方管中性浮力颗粒的惯性迁移。颗粒迁移到横截面中少量平衡位置之一,位于角或角附近。在边缘的中心。在稀悬浮液中,沿着流动的轴,在单个颗粒的平面平衡位置附近形成了一系列的颗粒。在高雷诺数(Re> = 750)下,我们观察到管道中心附近的内部区域中的粒子。我们提供了数值证据,表明紧密排列的粒子对可以在高雷诺数下迁移到中心。 (C)2006美国物理研究所。

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