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Numerical Simulations of Circular Particles in Parallel-plate Channel Flow Using Lattice Boltzmann Method

机译:用格子Boltzmann方法对平行板通道流动中圆形粒子的数值模拟

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References(20) Numerical simulations are performed using the lattice Boltzmann method for particulate suspension in a plane channel flow at low and moderate Reynolds numbers in order to investigate the blood cell behavior in microvascular flows. The simulation results of three types of particle volume fractions indicate the existence of an important relationship between the Reynolds number and the variance of the particles. When the particle volume fraction is small, it is found that the particles are concentrated between the centerline and the wall, that is, the Segré-Silberberg effect occurs. On the other hand, as the particle volume fraction becomes larger, this effect disappears and the variance of the particles increases. In the case of an inelastic collision, the number of the particles that flow near the wall increases and the variance of the particle distribution decreases in comparison with the case of the elastic collision.
机译:参考文献(20)使用晶格玻尔兹曼方法对低和中等雷诺数的平面通道流动中的颗粒悬浮液进行了数值模拟,以研究微血管流动中的血细胞行为。三种类型的粒子体积分数的模拟结果表明,雷诺数与粒子方差之间存在重要关系。当颗粒体积分数较小时,发现颗粒集中在中心线和壁之间,即,发生了Segré-Silberberg效应。另一方面,随着颗粒体积分数变大,该效果消失并且颗粒的方差增加。在非弹性碰撞的情况下,与弹性碰撞的情况相比,在壁附近流动的粒子的数量增加并且粒子分布的方差减小。

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