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A Numerical Study on Interparticle Collisions in a Microseparator/Classifier by a Macroscopic Particle Model

机译:微观颗粒分离器/颗粒分离器中颗粒间碰撞的宏观颗粒模型数值研究

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References(17) An effect of feed concentration on particle focusing in an arc microchannel is numerically examined. A macroscopic particle model, which does not need any drag and lift force correlations and hence can be regarded as quasi-direct numerical simulation, is employed to model interparticle collisions due to high shear rates in the microchannel. The model can take into account physical boundaries of particles in contact. In dilute conditions, all particle trajectories formed smooth inward spirals over the transverse plane. In dense flow conditions, the particle trajectories were distorted by collisions, and then the particle focusing declined. It suggests that a particle concentration, which is regarded as dilute in terms of volume concentration, can be regarded as hydraulically dense due to shear-induced particle collisions in a microchannel. It is predicted that the angle between particle-velocity vectors at successive time steps during collision is rather small. The importance of collision mechanism is discussed for the device application to various materials.
机译:参考文献(17)数值研究了进料浓度对电弧微通道中粒子聚焦的影响。宏观粒子模型不需要任何拖曳力和提升力的相关性,因此可以被视为准直接数值模拟,用于模拟由于微通道中的高剪切速率而产生的粒子间碰撞。该模型可以考虑接触颗粒的物理边界。在稀薄条件下,所有粒子轨迹在横向平面上均形成平滑的向内螺旋。在稠密的流动条件下,粒子的轨迹因碰撞而变形,然后粒子的聚焦下降。这表明,由于微通道中的剪切诱导的粒子碰撞,可以将按体积浓度被认为是稀的粒子浓度视为水密的。据预测,在碰撞过程中,相继的时间步长处的粒子速度矢量之间的夹角很小。讨论了碰撞机理对于设备应用于各种材料的重要性。

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