Fundamentals of computational fluid dynamics

David-W Zingg

,

Harvard Lomax

,

Thomas-H Pulliam

Note moyenne 
David-W Zingg et Harvard Lomax - Fundamentals of computational fluid dynamics.
This book is intended as a textbook for a first course in computational fluid dynamics and will be of interest to researchers and practitioners as well.... Lire la suite
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Résumé

This book is intended as a textbook for a first course in computational fluid dynamics and will be of interest to researchers and practitioners as well. It emphasizes fundamental concepts in developing, analyzing, and understanding numerical methods for the partial differential equations governing the physics of fluid flow. The linear convection and diffusion equations are used to illustrate concepts throughout.
The chosen approach, in which the partial differential equations are reduced to ordinary differential equations, and finally to difference equations, gives the book its distinctiveness and provides a sound basis for a deep understanding of the fundamental concepts in computational fluid dynamics.

Sommaire

    • Conservation laws and the model equations
    • Finite-difference approximations
    • The semi-discrete approach
    • Finite-volume methods
    • Time-marching methods for ODE'S
    • Stability of linear systems
    • Choosing a time-marching method
    • Relaxation methods
    • Multigrid
    • Numerical dissipation
    • Split and factored forms
    • Analysis of split and factored forms.

Caractéristiques

  • Date de parution
    10/07/2001
  • Editeur
  • Collection
  • ISBN
    3-540-41607-2
  • EAN
    9783540416074
  • Présentation
    Relié
  • Nb. de pages
    249 pages
  • Poids
    0.5 Kg
  • Dimensions
    16,2 cm × 24,1 cm × 1,9 cm

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