Parallel extrapolation methods and their application in chemical engineering:

Abstract: "We study the parallelization of linearly-implicit extrapolation methods for the solution of large scale systems of differential algebraic equations arising in a method of lines (MOL) treatment of partial differential equations. In our approach we combine a slightly overlapping domain...

Ausführliche Beschreibung

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Bibliographische Detailangaben
Hauptverfasser: Nowak, Ulrich (VerfasserIn), Ehrig, Rainald (VerfasserIn), Oeverdieck, Lars (VerfasserIn)
Format: Buch
Sprache:English
Veröffentlicht: Berlin Konrad-Zuse-Zentrum für Informationstechnik 1997
Schriftenreihe:Preprint SC / Konrad-Zuse-Zentrum für Informationstechnik Berlin 1997,69
Schlagworte:
Zusammenfassung:Abstract: "We study the parallelization of linearly-implicit extrapolation methods for the solution of large scale systems of differential algebraic equations arising in a method of lines (MOL) treatment of partial differential equations. In our approach we combine a slightly overlapping domain decomposition together with a polynomial block Neumann preconditioner. Through the explicit computation of the matrix products of the preconditioner and the system matrix a significant gain in overall efficiency is achieved for medium-sized problems. The parallel algorithm exhibits a good scalability up to 32 processors on a Cray T3E. Preliminary results for computations on a workstation cluster are reported."
Beschreibung:10 S.

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