Title
Numerical Methods for Simulating the Motion of Porous Balls in Simple 3D Shear Flows Under Creeping Conditions.
Abstract
In this article, two novel numerical methods have been developed for simulating fluid/porous particle interactions in three-dimensional (3D) Stokes flow. The Brinkman-Debye-Bueche model is adopted for the fluid flow inside the porous particle, being coupled with the Stokes equations for the fluid flow outside the particle. The rotating motion of a porous ball and the interaction of two porous balls in bounded shear flows have been studied by these two new methods. The numerical results show that the porous particle permeability has a strong effect on the interaction of two porous balls.
Year
DOI
Venue
2017
10.1515/cmam-2017-0012
COMPUTATIONAL METHODS IN APPLIED MATHEMATICS
Keywords
Field
DocType
Porous Particles,Brinkman-Debye-Bueche Model,Stokes Flow,Particle Suspension
Shear (sheet metal),Porosity,Mathematical analysis,Ball (bearing),Fluid dynamics,Mechanics,Numerical analysis,Stokes flow,Particle,Physics
Journal
Volume
Issue
ISSN
17
3
1609-4840
Citations 
PageRank 
References 
1
0.37
0
Authors
4
Name
Order
Citations
PageRank
Aixia Guo110.70
Tsorng-Whay Pan283.00
Jiwen He372.37
Roland Glowinski418850.44