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The Finite Element Method for Fluid Dynamics
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The Finite Element Method for Fluid Dynamics

The Finite Element Method for Fluid Dynamics

O. C. Zienkiewicz, R. L. Taylor, Perumal Nithiarasu - Collection Engineering

434 pages, parution le 09/12/2005 (6eme édition)

Résumé

Dealing with general problems in fluid mechanics, convection diffusion, compressible and incompressible laminar and turbulent flow, shallow water flows and waves, this is the leading text and reference for engineers working with fluid dynamics in fields including aerospace engineering, vehicle design, thermal engineering and many other engineering applications. The new edition is a complete fluids text and reference in its own right. Along with its companion volumes it forms part of the indispensable Finite Element Method series. New material in this edition includes sub-grid scale modelling; artificial compressibility; full new chapters on turbulent flows, free surface flows and porous medium flows; expanded shallow water flows plus long, medium and short waves; and advances in parallel computing.

L'auteur - O. C. Zienkiewicz

O.C. Zienkiewicz is Professor Emeritus at the Civil and Computational Engineering Centre, University of Wales Swansea, UK and holds the UNESCO Chair of Numerical Methods in Engineering at the Technical University of Catalunya, Spain

L'auteur - R. L. Taylor

R.L. Taylor is a Professor in the Graduate School, Department of Civil Engineering and Environmental Engineering at the University of California, Berkeley, USA

Sommaire

  • Preface
  • Acknowledgments
  • Introduction to the equations of fluid dynamics and the finite element approximation
  • Convection dominated problems - finite element approximations to the convection-diffusion-reaction equation
  • The characteristic-based split (CBS) algorithm. A general procedure for compressible and incompressible flow
  • Incompressible Newtonian laminar flows
  • Incompressible non-Newtonian flows
  • Free surface and buoyancy driven flows
  • Compressible high-speed gas flow
  • Turbulent flows
  • Generalized flow through porous media
  • Shallow water problems
  • Long and medium waves
  • Short waves
  • Computer implementation of the CBS algorithm
  • Appendices
  • Author Index
  • Subject Index
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Caractéristiques techniques

  PAPIER
Éditeur(s) Elsevier
Auteur(s) O. C. Zienkiewicz, R. L. Taylor, Perumal Nithiarasu
Collection Engineering
Parution 09/12/2005
Édition  6eme édition
Nb. de pages 434
Format 17,5 x 25
Couverture Relié
Poids 946g
Intérieur Noir et Blanc
EAN13 9780750663229
ISBN13 978-0-7506-6322-9

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