Introduction to Computational Fluid Dynamics, An: The Finite Volume Method

Author:   H. Versteeg ,  W. Malalasekera
Publisher:   Pearson Education (US)
Edition:   2nd edition
ISBN:  

9780131274983


Pages:   520
Publication Date:   06 February 2007
Format:   Paperback
Availability:   In stock   Availability explained
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Introduction to Computational Fluid Dynamics, An: The Finite Volume Method


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Overview

This established, leading textbook, is suitable for courses in CFD. This 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.    

Full Product Details

Author:   H. Versteeg ,  W. Malalasekera
Publisher:   Pearson Education (US)
Imprint:   Pearson
Edition:   2nd edition
Dimensions:   Width: 18.90cm , Height: 2.60cm , Length: 24.60cm
Weight:   0.990kg
ISBN:  

9780131274983


ISBN 10:   0131274988
Pages:   520
Publication Date:   06 February 2007
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   In stock   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

Table of Contents

Chapter 1 Introduction Chapter 2 Conservation laws of fluid motion and their boundary conditions Chapter 3 Turbulence and its modelling Chapter 4 The finite volume method for diffusion problems Chapter 5 The finite volume method for convection-diffusion problems Chapter 6 Solution algorithms for pressure-velocity coupling in steady flows Chapter 7 Solution of systems of discretised equations Chapter 8 The finite volume method for unsteady flows Chapter 9 Implementation of boundary conditions Chapter 10 Uncertainty in CFD modelling Chapter 11 Methods for dealing with complex geometries Chapter 12 CFD modelling of combustion Chapter 13 Numerical calculation of radiative heat transfer Appendices References Index

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