AbstractMulti-stage versions of Jacobi relaxation are studied for use in multigrid methods for steady Euler equations. It is shown that these multi-stage versions allow much more general and much more efficient multigrid methods than possible with classic relaxation methods
Recently, Li and Sanders have introduced a class of finite difference schemes to approximate general...
A recently derived local preconditioning of the Euler equations is shown to be useful in developing ...
We consider a highly parallel multigrid-like method for the solution of the two dimensional steady E...
AbstractMulti-stage versions of Jacobi relaxation are studied for use in multigrid methods for stead...
AbstractMulti-stage versions of Jacobi relaxation are studied for use in multigrid methods for stead...
AbstractThe multigrid method based on multi-stage Jacobi relaxation, earlier developed by the author...
AbstractA multigrid method for steady Euler equations based on polynomial flux-difference splitting ...
A flux-difference splitting type algorithm is formulated for the steady Euler equations on unstructu...
AbstractA flux-difference splitting based on the polynomial character of the flux-vectors is introdu...
AbstractFlux-vector splitting and flux-difference splitting techniques are applied to the Cauchy-Rie...
A fast multigrid solver for the steady incompressible Euler equations is presented. Unlike timemarch...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76080/1/AIAA-1989-1933-802.pd
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
Analytical and experimental convergence results are presented for a novel pseudo-unsteady solution m...
An efficient iterative solution method for second-order accurate discretizations of the 20 Steady Eu...
Recently, Li and Sanders have introduced a class of finite difference schemes to approximate general...
A recently derived local preconditioning of the Euler equations is shown to be useful in developing ...
We consider a highly parallel multigrid-like method for the solution of the two dimensional steady E...
AbstractMulti-stage versions of Jacobi relaxation are studied for use in multigrid methods for stead...
AbstractMulti-stage versions of Jacobi relaxation are studied for use in multigrid methods for stead...
AbstractThe multigrid method based on multi-stage Jacobi relaxation, earlier developed by the author...
AbstractA multigrid method for steady Euler equations based on polynomial flux-difference splitting ...
A flux-difference splitting type algorithm is formulated for the steady Euler equations on unstructu...
AbstractA flux-difference splitting based on the polynomial character of the flux-vectors is introdu...
AbstractFlux-vector splitting and flux-difference splitting techniques are applied to the Cauchy-Rie...
A fast multigrid solver for the steady incompressible Euler equations is presented. Unlike timemarch...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/76080/1/AIAA-1989-1933-802.pd
An efficient iterative method has been developed for the accurate solution of the non-isenthalpic st...
Analytical and experimental convergence results are presented for a novel pseudo-unsteady solution m...
An efficient iterative solution method for second-order accurate discretizations of the 20 Steady Eu...
Recently, Li and Sanders have introduced a class of finite difference schemes to approximate general...
A recently derived local preconditioning of the Euler equations is shown to be useful in developing ...
We consider a highly parallel multigrid-like method for the solution of the two dimensional steady E...