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  • Conference proceedings
  • © 2010

Parallel Computational Fluid Dynamics 2008

Parallel Numerical Methods, Software Development and Applications

Part of the book series: Lecture Notes in Computational Science and Engineering (LNCSE, volume 74)

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  • ISBN: 978-3-642-14438-7
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Softcover Book USD 219.99
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Table of contents (45 papers)

  1. Boundary methods

  2. High Order methods

    1. Front Matter

      Pages 161-161
    2. 3D Spectral Parallel Multi-Domain computing for natural convection flows

      • S. Xin, J. Chergui, P. Le Quéré
      Pages 163-171
    3. 3D time accurate CFD simulations of a centrifugal compressor

      • Andreas Lucius, Gunther Brenner
      Pages 173-180
  3. Lattice Boltzman and SPH Methods

    1. Front Matter

      Pages 245-245
    2. Multiple Relaxation Time Lattice Boltzmann simulation of binary droplet collisions

      • Ernesto Monaco, Kai H. Luo, Gunther Brenner
      Pages 257-264
    3. High-Performance Computing and Smoothed Particle Hydrodynamics

      • C. Moulinec, R. Issa, D. Latino, P. Vezolle, D. R. Emerson, X. J. Gu
      Pages 265-272
  4. software Framework and Component Architecture

    1. Front Matter

      Pages 273-273
    2. An integrated object-oriented approach for parallel CFD

      • Dominique Eyheramendy, David Loureiro, Fabienne Oudin-Dardun
      Pages 275-283
    3. Hybrid MPI-OpenMP performance in massively parallel computational fluid dynamics

      • G. Houzeaux, M. Vázquez, X. Sáez, J. M. Cela
      Pages 293-297

About this book

This book collects the proceedings of the Parallel Computational Fluid Dynamics 2008 conference held in Lyon, France. Contributed papers by over 40 researchers representing the state of the art in parallel CFD and architecture from Asia, Europe, and North America examine major developments in (1) block-structured grid and boundary methods to simulate flows over moving bodies, (2) specific methods for optimization in Aerodynamics Design, (3) innovative parallel algorithms and numerical solvers, such as scalable algebraic multilevel preconditioners and the acceleration of iterative solutions, (4) software frameworks and component architectures for parallelism, (5) large scale computing and parallel efficiencies in the industrial context, (6) lattice Boltzmann and SPH methods, and (7) applications in the environment, biofluids, and nuclear engineering.

Keywords

  • algebra
  • algorithms
  • computational fluid dynamics
  • computer science
  • fluid dynamics
  • numerical analysis
  • optimization
  • parallel computation
  • fluid- and aerodynamics

Editors and Affiliations

  • , Institut Camille Jordan, Université Lyon 1 - CNRS, Villeurbanne, France

    Damien Tromeur-Dervout

  • , Institut für Technische Mechanik, TU Clausthal, Clausthal-Zellerfeld, Germany

    Gunther Brenner

  • Daresbury Laboratory, Daresbury Science & Innovation Campus, Science & Technology Facilities Council, Warrington, United Kingdom

    David R. Emerson

  • INRIA - SAGE, Rennes, France

    Jocelyne Erhel

Bibliographic Information

Buying options

eBook USD 169.00
Price excludes VAT (USA)
  • ISBN: 978-3-642-14438-7
  • Instant PDF download
  • Readable on all devices
  • Own it forever
  • Exclusive offer for individuals only
  • Tax calculation will be finalised during checkout
Softcover Book USD 219.99
Price excludes VAT (USA)
Hardcover Book USD 219.99
Price excludes VAT (USA)