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E-raamat: Numerical Computation of Internal and External Flows: The Fundamentals of Computational Fluid Dynamics

(Professor of Fluid Mechanics at Vrije Universiteit Brussel, President of NUMECA International (leading CFD Software House), European Editor of the International Journal of Computational Fluid Dynamics)
  • Formaat: PDF+DRM
  • Ilmumisaeg: 18-Jul-2007
  • Kirjastus: Butterworth-Heinemann Ltd
  • Keel: eng
  • ISBN-13: 9780080550022
  • Formaat - PDF+DRM
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  • Formaat: PDF+DRM
  • Ilmumisaeg: 18-Jul-2007
  • Kirjastus: Butterworth-Heinemann Ltd
  • Keel: eng
  • ISBN-13: 9780080550022

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The second edition of the Numerical Computation of Internal and External Flows is a self-contained introduction to computational fluid dynamics (CFD). It covers the fundamentals of the subject in an introductory course for senior undergraduate level students. It is also ideal for readers who need a comprehensive reference to CFD theory and practice, or as the basis for more advanced study and simulation development.

The second edition of this classic book delivers the most up to date and comprehensive text available on computational fluid dynamics for engineers and mathematicians. Already renowned for its range and authority, this new edition has been significantly developed in terms of both contents and scope. A complete, self contained text, it will form the basis of study for many leading CFD courses at senior undergraduate and graduate level: a truly formidable resource covering the fundamentals of CFD.

• New approach takes readers seamlessly from first principles to more advanced and applied topics
• Presents the essential components of a simulation system at a level suitable for those coming into contact with CFD for the first time, and is ideal for those who need a comprehensive refresher on the fundamentals of CFD
• Enhanced pedagogy features chapter objectives, hands-on practice examples and end of chapter exercises
• Extended coverage of finite difference, finite
volume and finite element methods
• New chapters include an introduction to grid
properties and the use of grids in practice
• Includes material on 2-D inviscid, potential
and Euler flows, 2-D viscous flows, Navier-
Stokes flows to enable the reader to develop basic CFD simulations
• Accompanied by downloadable computer code for the numerical solution of 1-D convection and convection – diffusion problems, plus test cases. Visit http://books.elsevier.com for details.
• Includes Best-Practice guidelines for applying existing commercial or shareware CFD tools
• Solutions Manual for registered lecturers is available by e-mailing textbook@elsevier.com

The second edition of this book is a self-contained introduction to computational fluid dynamics (CFD). It covers the fundamentals of the subject and is ideal as a text or a comprehensive reference to CFD theory and practice.

• New approach takes readers seamlessly from first principles to more advanced and applied topics.

• Presents the essential components of a simulation system at a level suitable for those coming into contact with CFD for the first time, and is ideal for those who need a comprehensive refresher on the fundamentals of CFD.

• Enhanced pedagogy features chapter objectives, hands-on practice examples and end of chapter exercises.

• Extended coverage of finite difference, finite volume and finite element methods.

• New chapters include an introduction to grid properties and the use of grids in practice.

• Includes material on 2-D inviscid, potential and Euler flows, 2-D viscous flows and Navier-Stokes flows to enable the reader to develop basic CFD simulations.

• Includes best practice guidelines for applying existing commercial or shareware CFD tools.

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If you are serious about computational fluid dynamics this is the book that you cannot afford to be without

Part I The Mathematical Models for Fluid Flow Simulations at Various Levels of Approximation1. the Basic Equations of Fluid Dynamics2. The Dynamical Levels of Approximation3. The Mathematical Nature of the Flow Equations and Their Boundary Conditions

Part II Basic Discretization Techniques4. The Finite Difference Method for Structured Grids5. Finite Volume Method and Conservative Discretization with an Introduction to Finite Element Method6. Structured and Unstructured Grid Properties

Part III The Analysis of Numerical Schemes7. Consistency, Stability and Error Analysis of Numerical Schemes8. General Properties and High-Resolution Numerical Schemes

Part IV The Resolution of Numerical Schemes9. Time Integration Methods for Space-discretized Equations10. Iterative Methods for the Resolution of Algebraic Systems

Part V Applications to Inviscid and Viscous Flows11. Numerical Simulation of Inviscid Flows12. Numerical Solutions of Viscous Laminar Flows