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On the Accelerated Settling of Fine Particles in a Bidisperse Slurry

机译:关于双分散浆液中细颗粒的加速沉降

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摘要

An estimation of increasing the volume average sedimentation velocity of fine particles in bidisperse suspension due to their capturing in the circulation zone formed in the laminar flow of incompressible viscous fluid around the spherical coarse particle is proposed. The estimation is important for an explanation of the nonmonotonic shape of the separation curve observed for hydrocyclones. The volume average sedimentation velocity is evaluated on the basis of a cellular model. The characteristic dimensions of the circulation zone are obtained on the basis of a numerical solution of Navier-Stokes equations. Furthermore, these calculations are used for modelling the fast sedimentation of fine particles during their cosedimentation in bidisperse suspension. It was found that the acceleration of sedimentation of fine particles is determined by the concentration of coarse particles in bidisperse suspension, and the sedimentation velocity of fine fraction is proportional to the square of the coarse and fine particle diameter ratio. The limitations of the proposed model are ascertained.
机译:提出了一种估计,由于其分散在球形粗颗粒周围不可压缩粘性流体层流中形成的循环带中而导致的双分散悬浮液中的细颗粒的体积平均沉降速度增加。该估计对于解释旋流分离器观察到的分离曲线的非单调形状很重要。基于细胞模型评估体积平均沉降速度。循环区的特征尺寸是根据Navier-Stokes方程的数值解获得的。此外,这些计算用于模拟细颗粒在双分散悬浮液中的沉降过程中的快速沉降。发现细颗粒沉降的加速取决于双分散悬浮液中粗颗粒的浓度,细颗粒的沉降速度与粗颗粒直径比与细颗粒直径比的平方成正比。确定了所提出模型的局限性。

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