Title
A Parameter Robust Method for a Problem with a Symmetry Boundary Layer
Abstract
We consider the classical problem of a two-dimensional laminar jet of incompressible fluid flowingi nto a stationary medium of the same fluid [2]. The equations of motion are the same as the boundary layer equations for flow over an infinite flat plate, but with different boundary conditions. Numerical experiments show that, using an appropriate piecewise uniform mesh, numerical solutions are obtained which are parameter robust with respect to both the number of mesh nodes and the number of iterations required for convergence.
Year
DOI
Venue
2000
10.1007/3-540-45262-1_3
NAA
Keywords
Field
DocType
appropriate piecewise uniform mesh,stationary medium,numerical experiment,boundary layer equation,parameter robust method,mesh node,infinite flat plate,different boundary condition,incompressible fluid flowingi nto,classical problem,symmetry boundary layer,numerical solution,boundary condition,equation of motion,boundary layer
Blasius boundary layer,Discrete mathematics,Boundary value problem,Boundary layer thickness,Mathematical analysis,Laminar flow,Fluid dynamics,Boundary layer,Equations of motion,Numerical analysis,Geometry,Mathematics
Conference
Volume
ISSN
ISBN
1988
0302-9743
3-540-41814-8
Citations 
PageRank 
References 
0
0.34
1
Authors
3
Name
Order
Citations
PageRank
Ali R. Ansari1172.82
Alan F. Hegarty222.10
Grigorii I. Shishkin35215.80