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NASA NTRS · 19920040627

Domain decomposition methods in computational fluid dynamics

Abstract

The divide-and-conquer paradigm of iterative domain decomposition, or substructuring, has become a practical tool in computational fluid dynamic applications because of its flexibility in accommodating adaptive refinement through locally uniform (or quasi-uniform) grids, its ability to exploit multiple discretizations of the operator equations, and the modular pathway it provides towards parallelism. These features are illustrated on the classic model problem of flow over a backstep using Newton's method as the nonlinear iteration. Multiple discretizations (second-order in the operator and first-order in the preconditioner) and locally uniform mesh refinement pay dividends separately, and they can be combined synergistically. Sample performance results are included from an Intel iPSC/860 hypercube implementation.

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BibTeXRIS

Gropp, William D., Keyes, David E.. 1992-01-30. Domain decomposition methods in computational fluid dynamics. https://ntrs.nasa.gov/citations/19920040627

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