NASA NTRS · 20020051117
Progress in Parallel Schur Complement Preconditioning for Computational Fluid Dynamics
Abstract
We consider preconditioning methods for nonself-adjoint advective-diffusive systems based on a non-overlapping Schur complement procedure for arbitrary triangulated domains. The ultimate goal of this research is to develop scalable preconditioning algorithms for fluid flow discretizations on parallel computing architectures. In our implementation of the Schur complement preconditioning technique, the triangulation is first partitioned into a number of subdomains using the METIS multi-level k-way partitioning code. This partitioning induces a natural 2X2 partitioning of the p.d.e. discretization matrix. By considering various inverse approximations of the 2X2 system, we have developed a family of robust preconditioning techniques. A computer code based on these ideas has been developed and tested on the IBM SP2 and the SGI Power Challenge array using MPI message passing protocol. A number of example CFD calculations will be presented to illustrate and assess various Schur complement approximations.
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Barth, Timothy J., Chan, Tony F., Tang, Wei-Pai, Chancellor, Marisa K.. 1997-01-01. Progress in Parallel Schur Complement Preconditioning for Computational Fluid Dynamics. https://ntrs.nasa.gov/citations/20020051117
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