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Coupled CFD-DEM of particle-laden flows in a turning flow with a moving wall

机译:带有流动壁的转弯流中含颗粒流的耦合CFD-DEM

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The nature of the particle-solid interactions and particle-fluid interactions in rectangular duct bend geometry with/without a moving wall is studied, taking into account particle collision, colloidal, and hydrodynamic forces, and four way coupling between the fluid flow and particles. The focus is on systems where particles and fluid phase have similar length scales, fluid Reynolds number (Re_f) ~ 1, and particle's Stokes number (St) ~ 1. Particles move toward the walls of the channel near the bend, and have long residence times in these regions. Buoyancy force has negligible effect on particle motion, where adhesion and drag forces lead to particle motion and agglomeration patterns. The effect of a free surface on agglomeration sites in the turning flow is elucidated.
机译:研究了带有/不带有活动壁的矩形导管弯管几何形状中的颗粒-固体相互作用和颗粒-流体相互作用的性质,考虑了颗粒碰撞,胶体和流体动力以及流体与颗粒之间的四向耦合。重点关注的是这样的系统:粒子和液相具有相似的长度尺度,流体雷诺数(Re_f)〜1,粒子的斯托克斯数(St)〜1。粒子向弯道附近的通道壁移动,并且具有长的停留时间这些地区的时间。浮力对颗粒运动的影响可以忽略不计,其中的附着力和阻力会导致颗粒运动和聚集。阐明了自由表面对转向流中附聚部位的影响。

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