Principles Of Computational Fluid Dynami
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Auteur:
Pieter Wesseling
P. Wesseling
- Engels
- Paperback
- 9783642051456
- 21 december 2009
- 644 pagina's
Samenvatting
An account is given of the state of the art of numerical methods employed in computational fluid dynamics.
"This book is a well-written graduate level text in computational fluid dynamics, with a good introduction to the two numerical methods, finite volume and finite difference.
The book is aimed at graduate students, researchers, engineers and physicists involved in flow computations. An up-to-date account is given of the present state-of-the-art of numerical methods employed in computational fluid dynamics. The underlying numerical principles are treated with a fair amount of detail, using elementary mathematical analysis. Attention is given to difficulties arising from geometric complexity of the flow domain and of nonuniform structured boundary-fitted grids. Uniform accuracy and efficiency for singular perturbation problems is studied, pointing the way to accurate computation of flows at high Reynolds number. Much attention is given to stability analysis, and useful stability conditions are provided, some of them new, for many numerical schemes used in practice. Unified methods for compressible and incompressible flows are discussed. Numerical analysis of the shallow-water equations is included. The theory of hyperbolic conservation laws is treated. Godunov's order barrier and how to overcome it by means of slope-limited schemes is discussed. An introduction is given to efficient iterative solution methods, using Krylov subspace and multigrid acceleration. Many pointers are given to current literature, to help the reader to quickly reach the current research frontier.
"This book is a well-written graduate level text in computational fluid dynamics, with a good introduction to the two numerical methods, finite volume and finite difference.
The book is aimed at graduate students, researchers, engineers and physicists involved in flow computations. An up-to-date account is given of the present state-of-the-art of numerical methods employed in computational fluid dynamics. The underlying numerical principles are treated with a fair amount of detail, using elementary mathematical analysis. Attention is given to difficulties arising from geometric complexity of the flow domain and of nonuniform structured boundary-fitted grids. Uniform accuracy and efficiency for singular perturbation problems is studied, pointing the way to accurate computation of flows at high Reynolds number. Much attention is given to stability analysis, and useful stability conditions are provided, some of them new, for many numerical schemes used in practice. Unified methods for compressible and incompressible flows are discussed. Numerical analysis of the shallow-water equations is included. The theory of hyperbolic conservation laws is treated. Godunov's order barrier and how to overcome it by means of slope-limited schemes is discussed. An introduction is given to efficient iterative solution methods, using Krylov subspace and multigrid acceleration. Many pointers are given to current literature, to help the reader to quickly reach the current research frontier.
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Inhoud
- Taal
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- Bindwijze
- Paperback
- Oorspronkelijke releasedatum
- 21 december 2009
- Aantal pagina's
- 644
- Illustraties
- Nee
Betrokkenen
- Hoofdauteur
- Pieter Wesseling
- Tweede Auteur
- P. Wesseling
- Hoofduitgeverij
- Springer-Verlag Berlin and Heidelberg GmbH & Co. K
Overige kenmerken
- Editie
- 2001 ed.
- Extra groot lettertype
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- Product breedte
- 155 mm
- Product hoogte
- 45 mm
- Product lengte
- 236 mm
- Studieboek
- Ja
- Verpakking breedte
- 156 mm
- Verpakking hoogte
- 40 mm
- Verpakking lengte
- 242 mm
- Verpakkingsgewicht
- 1029 g
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- EAN
- 9783642051456
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