## High Performance Computing in Fluid Dynamics: Proceedings of the Summerschool on High Performance Computing in Fluid Dynamics Held at Delft University of Technology, June 24-28, 1996 : Held Under the Auspices of and with Support of ERCOFTAC (European Research Community on Flow, Turbulence and Combustion) and the J.M. Burgers Center (Graduate School for Fluid Dynamics, The Netherlands) |

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### Contents

Programming Aspects and Algorithms for Vector and Parallel Computers | 43 |

Porting Industrial Codes on HighPerformance Computers | 97 |

Load Balancing for Computational Fluid Dynamics | 145 |

Copyright | |

3 other sections not shown

### Other editions - View all

High Performance Computing in Fluid Dynamics: Proceedings of the ... P. Wesseling Limited preview - 2012 |

High Performance Computing in Fluid Dynamics: Proceedings of the ... P. Wesseling No preview available - 2011 |

High Performance Computing in Fluid Dynamics: Proceedings of the ... P. Wesseling No preview available - 1996 |

### Common terms and phrases

algorithm Amdahl's law application approach architectures array bandwidth Bi-CG Bi-CGSTAB bisection method BLAS block boundary bufid cache coherence calculation clock cycle communication compiler Conjugate Gradient connected convergence CRAY T3D CRAY Y-MP Dayde distributed memory domain decomposition Dongarra Duff dynamic load balancing efficiency elements ENDDO example execution factor Figure floating point operations Fluid Dynamics Fortran GMRES grid points hardware implementation innerproduct instruction Intel iPSC/860 iterative method Krylov subspace latency linear systems load balancing main memory matrix memory computers mesh message passing Mflop/s MIMD multi-block multiple multiprocessor nodes NSMB number of processors obtained parallel computers partition peak performance pipeline Poisson equation preconditioned preconditioner problem RISC RISC processors scalar scheme shared memory SIMD solution solved solver spectral bisection speed speed-up step subdomains subroutine supercomputers turbulent flow update vector processors vectorisation velocity virtual machine workstations