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Computational Methods for Fluid Dynamics [Paperback]

Joel H. Ferziger (Author), Milovan Peric (Author)
3.5 out of 5 stars  See all reviews (8 customer reviews)

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Book Description

December 12, 2001 3540420746 978-3540420743 3rd
In its third revised and extended edition the book offers an overview of the techniques used to solve problems in fluid mechanics on computers. The authors describe in detail the most often used techniques. Included are advanced techniques in computational fluid dynamics, such as direct and large-eddy simulation of turbulence. Moreover, a new section deals with grid quality and an extended description of discretization methods has also been included. Common roots and basic principles for many apparently different methods are explained. The book also contains a great deal of practical advice for code developers and users.

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Customers buy this book with An Introduction to Computational Fluid Dynamics: The Finite Volume Method (2nd Edition) $90.05

Computational Methods for Fluid Dynamics + An Introduction to Computational Fluid Dynamics: The Finite Volume Method (2nd Edition)
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Editorial Reviews

Review

From the reviews of the third edition: "This book, primarily oriented towards industrial applications, intends to provide engineers with the necessary background to use and understand commercial fluid dynamics modeling codes or, alternatively, to develop their own. … In summary, this text, which is commendable for its excellent plain English and pedagogic qualities, constitutes an excellent introduction to the world of computational fluid dynamics and will proudly find its place on the shelf besides more classical reference textbooks." (Michael Crucifix, Physicalia, Vol. 25 (2), 2003) "In reviewer’s opinion, the book is a mixture of surveys and detailed discussions, the latter reflecting the experience of the authors. Thus the book is valuable for the beginners and also for the specialists." (Willi Schönauer, Zentralblatt MATH, Vol. 998, 2002) "In its 3rd revised and extended edition the book offers an overview of the techniques used to solve problems in fluid mechanics on computers and describes in detail those most often used in practice. … The book also contains a great deal of practical advice for code developers and users, it is designed to be equally useful to beginners and experts. … A full-feature user-friendly demo-version of a commercial CFD software has been added … ." (ETDE Energy Database, January, 2002)

From the Back Cover

In its 3rd revised and extended edition the book offers an overview of the techniques used to solve problems in fluid mechanics on computers and describes in detail those most often used in practice. Included are advanced methods in computational fluid dynamics, like direct and large-eddy simulation of turbulence, multigrid methods, parallel computing, moving grids, structured, block-structured and unstructured boundary-fitted grids, free surface flows. The 3rd edition contains a new section dealing with grid quality and an extended description of discretization methods. The book shows common roots and basic principles for many different methods. The book also contains a great deal of practical advice for code developers and users, it is designed to be equally useful to beginners and experts. The issues of numerical accuracy, estimation and reduction of numerical errors are dealt with in detail, with many examples. A full-feature user-friendly demo-version of a commercial CFD software has been added, which can be used to compute all flow examples from the book. All computer codes can be accessed from the publishers server on the internet.

Product Details

  • Paperback: 437 pages
  • Publisher: Springer; 3rd edition (December 12, 2001)
  • Language: English
  • ISBN-10: 3540420746
  • ISBN-13: 978-3540420743
  • Product Dimensions: 9.2 x 6.1 x 0.9 inches
  • Shipping Weight: 1.5 pounds (View shipping rates and policies)
  • Average Customer Review: 3.5 out of 5 stars  See all reviews (8 customer reviews)
  • Amazon Best Sellers Rank: #315,149 in Books (See Top 100 in Books)

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Customer Reviews

8 Reviews
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Average Customer Review
3.5 out of 5 stars (8 customer reviews)
 
 
 
 
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16 of 17 people found the following review helpful:
4.0 out of 5 stars A lot of excellent detail, December 21, 1998
By 
Edward J. McInerney (San Jose, CA United States) - See all my reviews
(REAL NAME)   
This is a very good book for learning the details of implementing the Finite Volume method in Computational Fluid Dynamics. I view it as very complimentary to S. V. Patankar's book, which is more general in nature. Both books are geared toward people who want to write computer programs to solve fluid transport problems (heat transfer, Navier-Stokes, etc.) Both tend to focus on numerical issues (as opposed to the physics of transport phenomena). But while Pantankar's book provides a very easy, approachable introduction that is thin on the details, Ferziger & Peric have written a book rich in details. For instance, they devote an entire chapter to solving linear systems of equations. They compare all of the commonly used methods and contrast their rates of convergence for various test cases. This level of detail is great if you already understand the big picture. I think it may be somewhat difficult for someone new to CFD to really understand the finite volume method from this book alone. I would recommend Patankar's book for a good intro and this book for the implementation details.
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14 of 15 people found the following review helpful:
5.0 out of 5 stars I give it 5 stars, March 15, 2001
By 
I agree with the reviewer that said this book is complimentary to an intro text such as Patankar. This is not a cook book for a first time coder. But it is a really great reference for the Finite Volume dilettante.

I really appreciate that all numerical results presented are thoroughly documented. That counts.

Really, really nice chapter on iterative solvers....

Good overall description on many other topics such as multi-grid methods, turbulence, grid geometry and PV coupling.

This book really helped me speed up my homegrown quite a bit.

They also have all kinds of stuff available by ftp....

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13 of 14 people found the following review helpful:
5.0 out of 5 stars One of the best books for CFD code developers, May 23, 2001
By A Customer
This is the best book on CFD I' ve read. It is more useful to those who want to develop their own codes rather than CFD users: It mostly describes in deep detail (although in a concise manner) a single method used by the authors and developed by themselves and their colleagues. It is not intended to be a list of the vast number of CFD techniques developed so far.

Their method is state-of-the-art and they provide plenty of results to support it's quality. It is mostly directed towards incompressible flows. They provide a chapter that extends their method to compressible flows but they do not describe any special convection schemes for flows with shock waves. It can be applied to both structured and arbitrarily unstructured grids, although their approach to the discretization of the convection and diffusion terms is particularly useful in the case of arbitrarily unstrucured grids. State of the art subjects such as multigrid and error-driven grid refinement are also covered and integrated into their method.

I agree with a previous reviewer that they provide a very good coverage of solution methods for linear equation systems which arise in CFD. Most other books on CFD (all the ones that I have read) have a poor coverage of the subject and describe only old and inneficient methods. However even this book does not sufficiently describe conjugate-gradient type methods or Krylov subspace methods in general, but references are provided.

In conclusion, this book is not for beginners but for code developers who have some basic knowlwdge of CFD and a relatively good mathematical background.

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Inside This Book (learn more)
Key Phrases - Statistically Improbable Phrases (SIPs): (learn more)
mass flux correction, difference between two iterates, colocated arrangement, discretized continuity equation, leading truncation error term, cell face center, generic transport equation, colocated grids, deferred correction approach, midpoint rule approximation, temporal discretization errors, multipoint methods, strong conservation form, linearized momentum equations, pressure correction equation, computational molecule, global coefficient matrix, adaptive grid methods, various solvers, outer iteration, local grid refinement, false diffusion, new time level, iteration error, next finer grid
Key Phrases - Capitalized Phrases (CAPs): (learn more)
Solution of Linear Equation, Reynolds-averaged Navier-Stokes, Basic Concepts of Fluid Flow, Line Gauss-Seidel, Predicted Mach
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