剪切流中质量偏心对球形颗粒运动的影响

Mitsuru Tanaka, Akira Matsuura, K. Tajiri, H. Nishida, M. Yamakawa
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引用次数: 0

摘要

为了研究质量偏心对剪切流中颗粒运动的影响,对具有偏心内质量分布的球形颗粒在层流和湍流垂直流中受水平剪切作用的运动进行了粒子解析模拟。本文重点研究了具有内球形核的球壳/空心粒子作为质量偏心粒子的典型例子。分别求解了流体相的Navier-Stokes方程和颗粒的Newton-Euler方程。采用浸入边界法表示壳粒。考虑球壳质心与球壳质心的偏离,采用定体坐标系和四元数参数求解了牛顿-欧拉方程。数值结果表明,当重力作用在粒子上的力矩大于剪切作用在粒子上的力矩时,粒子有停止转动的趋势。研究发现,在层流和湍流中,偏心质量粒子的横向迁移变得不那么剧烈,因为偏心质量粒子的马格努斯力的作用也减弱了。研究还发现,层流中颗粒的质量偏心率对流体动能的演化有显著影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Mass Eccentricity on the Motion of Spherical Particles in Shear Flows
A particle-resolved simulation is performed on the motion of spherical particles with an eccentric internal mass distribution in laminar and turbulent vertical flows subjected to horizontal shear in order to examine the effects of mass eccentricity on the motion of particles in shear flows. A spherical shell/hollow particles with an inner spherical core is focused on as a typical example of mass eccentric particles. The Navier-Stokes equations and the Newton-Euler equations are solved for the fluid phase and the particles, respectively. An immersed boundary method is adopted to represent the shell particle. The Newton-Euler equations are solved using the body-fixed coordinate system and four quaternion parameters, considering the deviation of the mass center from the center of the spherical shell particle. Numerical results show that a particle tends to stop its rotation when the torque acting on the particle due to the gravity exceeds that due to the shear. It is found that the transverse migration of mass-eccentric particles becomes less vigorous in both laminar and turbulent flows since the effect of the Magnus force is also weakened for mass-eccentric particles. It is also found that the evolution of fluid kinetic energy is significantly affected by the mass-eccentricity of particles in laminar flows.
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