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Parallel Computational Fluid Dynamics
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Part 1 Overview: parallel CFD - current status and future requirements, Horst D. Simon, et al. Part 2 Implementations on parallel machines: a parallel algorithm for compressible flows through rotor-stator combinations, H.U. Akay and A. Beskok; on a massively parallel euler solver for unstructured grids, S. Hammond and T. Barth; a fast scheme to analyze 3D disk airflow on a parallel computer, H. Li and C.J. Chang; a uniform algorithm for boundary and interior regions, C. Li, et al; implicit CFD applications on message passing multiprocessor systems, V. Naik, et al; block implicit multigrid solution of the euler equations, Yoram Yadlin and David A. Caughey. Part 3 Numerical algorithms for parallel CFD: a 3-D ADI algorithm on distributed memory multiprocessors, P. Leca and L. Mane; clustered element-by-element computations for fluid flow, J. Liou and T.E. Tezduyar; hypercube FFT and fourier pseudospectral method, Richard B. Pelz; investigation of parallel iterative algorithms for CFD, S.Z. Yu, et al. Part 4 Performance evaluation and computer science issues: sorting for particle flow simulation on the connection machine, Leonardo Dagum; fluid dynamics using interface methods on parallel processors, Yuefan Deng and James Glimm; computational performance of CFD codes on the connection machine, T. Alan Egolf; a large grain mappint method, Christos A. Papachristou and H.S. Kim; towards the teraflops capability for CFD, Robert Schreiber and Horst D. Simon.

About the Author

William Gropp is Director of the Parallel Computing Institute and Thomas M. Siebel Chair in Computer Science at the University of Illinois Urbana-Champaign. Ewing Lusk is Argonne Distinguished Fellow Emeritus at Argonne National Laboratory.

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