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PARTICLE ENTRAINMENT IN TURBULENT FLOWS

机译:湍流中的颗粒物夹带

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摘要

An overview of removal and re-entrainment of particles in turbulent flows is presented. The procedure for the direct numerical simulation (DNS) of the Navier-Stokes equation via a pseudospectral method for simulating the instantaneous fluid velocity field is described. Particle removal mechanisms in turbulent flows in a duct are examined and effects of the near-wall coherent eddies on the particle detachment and removal are discussed. The particle equation of motion, including the hydrodynamic drag and lift, as well as the Brownian and gravitational forces, are used in the analysis. The simulation results show that large size particles move away roughly perpendicular to the wall due to the action of the shear lift force. Small particles, however, follow the upward flows formed by the near wall eddies in the low speed streak regions. Thus, turbulent near wall eddies play an important role on small particle resuspension, while the lift force is an important factor for re-entrainment of large particles. The results also suggest that small particles primarily move away from the wall in the low speed streaks, while larger particles are mostly removed in the high-speed streaks.
机译:概述了去除和重新夹带湍流中的颗粒。描述了通过用于模拟瞬时流体速度场的伪谱方法对Navier-Stokes方程进行直接数值模拟(DNS)的过程。研究了管道中湍流中的颗粒去除机理,并讨论了近壁相干涡对颗粒分离和去除的影响。分析中使用了包括流体动力阻力和升力以及布朗力和重力在内的质点运动方程。仿真结果表明,由于剪切升力的作用,大尺寸的颗粒大致垂直于壁而移动。然而,小颗粒跟随低速条纹区域中近壁涡流形成的向上流动。因此,湍流的近壁涡旋在小颗粒的再悬浮中起着重要的作用,而升力是大颗粒重新夹带的重要因素。结果还表明,小颗粒在低速条纹中主要从壁上移开,而大颗粒在高速条纹中主要被去除。

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