教授 博士生导师 硕士生导师
性别: 男
出生日期: 1955-05-06
毕业院校: 江苏工学院
学位: 学士
所在单位: 力学与航空航天学院
学科: 流体力学. 计算力学. 航空航天力学与工程. 飞行器设计
办公地点: 大连理工大学综合实验一号楼415室
联系方式: cjwudut@dlut.edu.cn或cj_wu@163.com
电子邮箱: cjwudut@dlut.edu.cn
学术主页: : http://202.118.74.190/~cjwu/
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论文类型: 期刊论文
发表时间: 2017-03-01
发表刊物: SCIENCE CHINA-PHYSICS MECHANICS & ASTRONOMY
收录刊物: SCIE、EI、Scopus
卷号: 60
期号: 3
ISSN号: 1674-7348
关键字: particle collisions; lattice Boltzmann method; immersed boundary method; hard sphere molecular dynamics; harmonic oscillation
摘要: We integrate the lattice Boltzmann method (LBM) and immersed boundary method (IBM) to capture the coupling between a rigid boundary surface and the hydrodynamic response of an enclosed particle laden fluid. We focus on a rigid box filled with a Newtonian fluid where the drag force based on the slip velocity at the wall and settling particles induces the interaction. We impose an external harmonic oscillation on the system boundary and found interesting results in the sedimentation behavior. Our results reveal that the sedimentation and particle locations are sensitive to the boundary walls oscillation amplitude and the subsequent changes on the enclosed flow field. Two different particle distribution analyses were performed and showed the presence of an agglomerate structure of particles. Despite the increase in the amplitude of wall motion, the turbulence level of the flow field and distribution of particles are found to be less in quantity compared to the stationary walls. The integrated LBM-IBM methodology promised the prospect of an efficient and accurate dynamic coupling between a non-compliant bounding surface and flow field in a wide-range of systems. Understanding the dynamics of the fluid-filled box can be particularly important in a simulation of particle deposition within biological systems and other engineering applications.