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Fluid Dynamics with a Computational Perspective

This book provides a development of fluid flow theory and how computations are formulated and effected.

Paul A. Durbin (Author), Gorazd Medic (Author)

9780521850179, Cambridge University Press

Hardback, published 17 September 2007

362 pages
26 x 18 x 2 cm, 0.792 kg

Modern fluid dynamics is a combination of traditional methods of theory and analysis and newer methods of computation and numerical simulation. Fluid Dynamics with a Computational Perspective synthesizes traditional theory and modern computation. It is neither a book on methods of computation, nor a book on analysis; it is about fluid dynamics. The book is ideal for a course on fluid dynamics. Early chapters review the laws of fluid mechanics and survey computational methodology, following chapters study flows in which the Reynolds number increases from creeping flow to turbulence, followed by a thorough discussion of compressible flow and interfaces. Whereas all significant equations and their solutions are presented, their derivations are informal. References for detailed derivations are provided. A chapter on intermediate Reynolds number flows provides illustrative case studies by pure computation. Elsewhere, computations and theory are interwoven.

1. Introduction to viscous flow
2. Elements of computational analysis
3. Creeping flow
4. Intermediate Reynolds numbers
5. High Reynolds number and boundary layer
6. Turbulent flow
7. Compressible flow
8. Interfaces.

Subject Areas: Mechanics of fluids [TGMF], Dynamics & vibration [TGMD4], Mechanical engineering [TGB]

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