Title of article :
Stabilization and scalable block preconditioning for the Navier–Stokes equations
Author/Authors :
Cyr، نويسنده , , Eric C. and Shadid، نويسنده , , John N. and Tuminaro، نويسنده , , Raymond S.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2012
Pages :
19
From page :
345
To page :
363
Abstract :
This study compares several block-oriented preconditioners for the stabilized finite element discretization of the incompressible Navier–Stokes equations. This includes standard additive Schwarz domain decomposition methods, aggressive coarsening multigrid, and three preconditioners based on an approximate block LU factorization, specifically SIMPLEC, LSC, and PCD. Robustness is considered with a particular focus on the impact that different stabilization methods have on preconditioner performance. Additionally, parallel scaling studies are undertaken. The numerical results indicate that aggressive coarsening multigrid, LSC and PCD all have good algorithmic scalability. Coupling this with the fact that block methods can be applied to systems arising from stable mixed discretizations implies that these techniques are a promising direction for developing scalable methods for Navier–Stokes.
Keywords :
Navier–Stokes , Stabilized finite element , Block preconditioning , Fully-implicit , Large-scale parallel , Multilevel preconditioner
Journal title :
Journal of Computational Physics
Serial Year :
2012
Journal title :
Journal of Computational Physics
Record number :
1484031
Link To Document :
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