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Titlebook: Computational Fluid Dynamics on Parallel Systems; Proceedings of a CNR Siegfried Wagner Conference proceedings 1995 Friedr. Vieweg & Sohn V

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Flow simulation with FEM on massively parallel systems,e variety of flow problems. To obtain useful results for realistic problems one has to use grids with an extremely high density to get a good resolution of the interesting parts of a given flow. Since these details are often limited to small regions of the calculation domain, it is efficient to use
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An Integrated Concept for the Parallelization of Finite Element Simulations of Flow Problems,is presented in this paper. The concept integrates all relevant steps of the numerical simulation, in particular the mesh generation and decomposition into subdomains, the finite element computations, and the visualization of results. A novel algorithm for the decomposition of the block structure de
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Turbulent combustion modeling using complex chemistry on SIMD architecture,ent combustion modeling very crude assumptions have been formulated to account for the chemical activity. Either, time scales related to chemistry are supposed to be small compared to the relevant time scale of the turbulent flow, or, very reduced and simplified chemical schemes are used.
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Conference proceedings 1995 and DFG a DFG symposium on "Computational Fluid Dynamics (CFD) on Parallel Systems" was organized at the Institut fur Aerodynamik and Gasdynamik of the Stuttgart University, 9-10 December 1993. This symposium was attended by 37 scientists. The scientific program consisted of 18 papers that consider
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Probability and Its Applicationseveral computing platforms and both two- and three-dimensional test calculations. It is shown that implicit finite volume methods can be efficiently parallelized, and that good efficiency and scalability is achieved.
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Parallelization of Implicit Methods for Flow Simulation,everal computing platforms and both two- and three-dimensional test calculations. It is shown that implicit finite volume methods can be efficiently parallelized, and that good efficiency and scalability is achieved.
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1612-2909 on of CNRS and DFG a DFG symposium on "Computational Fluid Dynamics (CFD) on Parallel Systems" was organized at the Institut fur Aerodynamik and Gasdynamik of the Stuttgart University, 9-10 December 1993. This symposium was attended by 37 scientists. The scientific program consisted of 18 papers tha
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Samuel N. Cohen,Robert J. Elliotts, its application to turbulence simulation, and its parallel implementation. First numerical results with Reynolds number 7000 as well as parallelization results on a network of 110 workstations for a hard test problem will be discussed.
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