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This established, leading textbook, is suitable for courses in CFD. The new edition covers new techniques and methods, as well as considerable expansion of the advanced topics and applications (from one to four chapters).
This book presents the fundamentals of computational fluid mechanics for the novice user. It provides a thorough yet user-friendly introduction to the governing equations and boundary conditions of viscous fluid flows, turbulence and its modelling, and the finite volume method of solving flow problems on computers.
- Sales Rank: #153691 in Books
- Brand: Versteeg, H. K./ Malalasekera, W.
- Published on: 2007-02-26
- Original language: English
- Number of items: 1
- Dimensions: 9.70" h x 1.10" w x 7.40" l, 2.18 pounds
- Binding: Paperback
- 520 pages
From the Back Cover
The use of Computational Fluid Dynamics to simulate and predict fluid flows, heat transfer and associated phenomena continues to grow throughout many engineering disciplines. On the back of ever more powerful computers and graphical user interfaces CFD provides engineers with a reliable tool to assist in the design of industrial equipment often reducing or eliminating the need for performing trial-and-error experimentation.
An Introduction to Computational Fluid Dynamics is the ideal text for the newcomer to the area whether they be undergraduates, graduates, or professionals. It provides thorough yet accessible coverage of commercial finite volume based CFD codes within the context of the underlying theory, giving the reader a full appreciation of CFD and its numerous engineering applications.
Key features
- Offers essential support for novice users of commercial CFD codes such as ANSYS CFX, FLUENT, STAR-CD and PHOENICS.
- Covers fluids and turbulence physics together with computational modelling techniques
- Uses a step-by-step approach to introduce the methodology
- Chapter summaries and worked examples throughout to reinforce understanding of the key concepts
New to this edition
- A new chapter describing unstructured meshing techniques
- A new chapter on CFD uncertainty
- New coverage of the fundamentals of Large-Eddy Simulation (LES) and Direct Numerical Simulation (DNS) techniques
- Summaries of TVD techniques and multi-grid solution techniques
- Added examples of the SIMPLE algorithm for pressure-velocity coupling
- Two new chapters with advanced material covering combustion and radiative heat transfer modelling
H K Versteeg and W Malalasekera are both senior lecturers in Thermo-Fluids, at Loughborough University.
Most helpful customer reviews
2 of 2 people found the following review helpful.
Good Update From First Edition
By Jeff Booth
This is a very readable and practical book that focuses only on incompressible semi-implicit methods. It is an introduction, it moves at a slower pace and covers less ground than the Ferziger & Peric book, but what it does address is very well explained. I own both the first and second edition. I had reviewed the first edition 10 years ago and was only moderately impressed because it was similar to Patankar's book but published 15 years later. The 2nd edition has added a lot of material which advances the topic quite a bit from the 1st edition.
My main complaint about the first edition was that it focused on Cartesian structured grids which is pretty dated. The new version has a chapter on collocation of variables and how to handle the pressure gradient in the continuity correction step. Additionally it explains how to account for convection and diffusion in generalized non-Cartesian coordinates. It would be nice if storage and solution methods were explained for the iterative solver needed for an unstructured mesh but that aside the material presented in this new chapter is very well explained.
Another nice touch is explanation of multigrid techniques as an iterative solver. The authors allude to implementing multigrid into the outer iterations but do not drill down on the topic.
There is a chapter explaining the introduction for turbulence modeling but it is not complete enough to implement without supplemental sources.
This book gives very detailed step by step explanations of many things in the first edition, detailed examples of calculations and results are shown which really illustrate the method and where the pitfalls are. There are less examples for the newer material, but it is still explained carefully. The material is very accessible. One could use this book by itself to write a very basic code based on this method. I could imagine if the authors were to make a third edition where turbulence, multigrid and unstructured solution techniques were addressed with the same depth as some of the other topics that the book could become a real institution.
7 of 7 people found the following review helpful.
An excellent start to CFD
By Richard Jones
An excellent place to start for the recent engineering graduate. Leads on from the basic numerical techniques, fluid theory and matrix solutions you learn in your undergraduate courses.
This book will allow you to begin to use CFD codes.
In order to develop a deeper understanding of the codes you are using, or to write your own codes the next step is Ferziger and Peric's "Computational Methods for Fluid Dynamics" AND Wilcox's "Turbulence Modeling for CFD".
6 of 7 people found the following review helpful.
Excellent beginner's guide to process CFD
By A. Hinrichs
For those were interested in getting into or needing to developing the skills to perform computational fluid dynamics, this book is an excellent place to get started. It Is the required text for my undergraduate college mechanical engineering CFD course, and was selected by our MIT graduate teacher. The book comes up often is hard to read at certain points, and the terminology gets confusing, but these problems don't apply to more serious students. The book itself is not teach you to use any particular software, i.e. fluent, but rather teaches you how CFD is done, how to determine the problem variables, and how to model it with mathematical equations. The book gives you all of the equations, but you'll need a good background in calculus math to understand and solve were looking at (if you're naturally good at math this might not apply). I have completed course yet but from what I've seen in the book, the book treats this subject as seriously as you read. So if you skim it lightly you can still understand or solve some of the problems, but you'll miss the more complex situations and the meaning of why things are done a certain way.
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