Title
Numerical solution of steady viscous flow of a micropolar fluid driven by injection between two porous disks
Abstract
Steady, laminar, incompressible and two-dimensional flow of a micropolar fluid between two porous coaxial disks is considered. To describe the working fluid, we use the micropolar model given by Eringen. The governing equations of motion are reduced to a set of non-linear coupled ordinary differential equations using Berman’s similarity transformation. The SOR iterative method is used to solve the differential equations numerically. For higher order accuracy, the results obtained are further refined and enhanced by Richardson’s extrapolation method. The results of micropolar fluids are compared on different grid sizes.
Year
DOI
Venue
2006
10.1016/j.amc.2005.11.073
Applied Mathematics and Computation
Keywords
Field
DocType
Porous disks,Micropolar,Similarity transformation,Extrapolation,SOR method,Microrotation
Differential equation,Runge–Kutta methods,Ordinary differential equation,Mathematical analysis,Linear differential equation,Laminar flow,Equations of motion,Incompressible flow,Two-dimensional flow,Mathematics
Journal
Volume
Issue
ISSN
179
1
0096-3003
Citations 
PageRank 
References 
0
0.34
0
Authors
3
Name
Order
Citations
PageRank
M. Anwar Kamal100.34
Muhammad Ashraf274.62
K.S. Syed300.34