Handbook of computational fluid mechanics
著者
書誌事項
Handbook of computational fluid mechanics
Academic Press, c1996
- pbk
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内容説明・目次
- 巻冊次
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pbk ISBN 9780125322003
内容説明
Computational fluid dynamics now plays a vital role in all branches of fundamental and applied mechanics, in research as well as industry. Now available in paperback, this handbook provides graduate students, scientists, and engineers a well-documented critical survey of numerical methods for fluid mechanics. A state-of-the-art description of computational fluid dynamics is given, taking into account the simultaneous rapid development of numerical analysis, computer technology, and visualization tools. This is done while pointing out the basic foundations that have made possible the extraordinary spread of the discipline; some important theoretical results are also given. The seven chapters of the book are invaluable tools with which to gain a deeper appreciation of the problems associated with the calculation of fluid motion in various situations: inviscid and viscous, incompressible and compressible, steady and unsteady, laminar and turbulent flows, as well as simple and complex geometries. Finally, each chapter is accompanied by a large but carefully selected bibliography.
- 巻冊次
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ISBN 9780125530101
内容説明
This reference covers computational fluid dynamics from fundamentals to applications. It surveys numerical methods for fluid mechanics, gives a description of computational fluid mechanics and looks at numerical analysis, computer technology and visualization tools. It aims to provide the means of reaching a deeper understanding of the problems associated with the calculation of fluid motion in various situations: inviscid and viscous, incompressible, steady and unsteady, laminar and turbulent flows, and simple and complex geomertries.
目次
- About the basic numerical methods, A. Dervieux
- Navier-Stokes equations for incompressible flows - finite-difference and finite-volume methods, G.B. Deng et al
- Navier-Stokes equations for incompressible laminar flow - finite-element methods, M.D. Gunzburger
- euler and Navier-Stokes equations for compressible laminar flows - finite-volume methods, F. Grasso and C. Meola
- turbulent flows - direct numerical simulation and large-eddy simulation, C. Hartel
- turbulent flows - model equations and solution methodology, T. Gatski
- mesh generation and adaptivity for complex geometries and flows, D. Mavriplis.
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