Computational Fluid Dynamics: Principles and Applications
Computational Fluid Dynamics (CFD) is an important design tool in engineering and also a substantial research tool in various physical sciences as well as in biology.

The objective of this book is to provide university students with a solid foundation for understanding the numerical methods employed in today’s CFD and to familiarise them with modern CFD codes by hands-on experience. It is also intended for engineers and scientists starting to work in the field of CFD or for those who apply CFD codes. Due to the detailed index, the text can serve as a reference handbook too.

Each chapter includes an extensive bibliography, which provides an excellent basis for further studies.

1124310652
Computational Fluid Dynamics: Principles and Applications
Computational Fluid Dynamics (CFD) is an important design tool in engineering and also a substantial research tool in various physical sciences as well as in biology.

The objective of this book is to provide university students with a solid foundation for understanding the numerical methods employed in today’s CFD and to familiarise them with modern CFD codes by hands-on experience. It is also intended for engineers and scientists starting to work in the field of CFD or for those who apply CFD codes. Due to the detailed index, the text can serve as a reference handbook too.

Each chapter includes an extensive bibliography, which provides an excellent basis for further studies.

150.0 In Stock
Computational Fluid Dynamics: Principles and Applications

Computational Fluid Dynamics: Principles and Applications

by Jiri Blazek
Computational Fluid Dynamics: Principles and Applications

Computational Fluid Dynamics: Principles and Applications

by Jiri Blazek

eBook

$150.00 

Available on Compatible NOOK devices, the free NOOK App and in My Digital Library.
WANT A NOOK?  Explore Now

Related collections and offers


Overview

Computational Fluid Dynamics (CFD) is an important design tool in engineering and also a substantial research tool in various physical sciences as well as in biology.

The objective of this book is to provide university students with a solid foundation for understanding the numerical methods employed in today’s CFD and to familiarise them with modern CFD codes by hands-on experience. It is also intended for engineers and scientists starting to work in the field of CFD or for those who apply CFD codes. Due to the detailed index, the text can serve as a reference handbook too.

Each chapter includes an extensive bibliography, which provides an excellent basis for further studies.


Product Details

ISBN-13: 9780128011720
Publisher: Butterworth-Heinemann
Publication date: 04/23/2015
Sold by: Barnes & Noble
Format: eBook
Pages: 466
File size: 13 MB
Note: This product may take a few minutes to download.

About the Author

Jiri Blazek received his MSc in Aerospace Engineering from the Institute of Technology in Aachen, Germany in 1989. He continued his research at the German Aerospace Center, DLR, and in 1995 obtained his PhD in Aerospace Engineering, focusing on CFD methods for high-speed flows, from the University of Braunschweig, Germany. Following this, Dr. Blazek worked as a research scientist at ABB Turbosystems in Baden, Switzerland, moving to ABB Corporate Research Ltd. (now ALSTOM Power Ltd.) as researcher and project leader for CFD code development in the fields of gas and steam turbines. He was appointed as senior research scientist at the Center for Simulation of Advanced Rockets, University of Illinois at Urbana-Champaign, USA and in 2005 founded his own consultancy and software development firm, CFD Consulting and Analysis, in Sankt Augustin, Germany.

Dr. Blazek’s main research interests include: CFD code development - especially in the area of unstructured grids, aircraft and turbomachinery aerodynamics; shape optimization; and data visualization.

Table of Contents

1. Introduction
2. Governing Equations
3. Principles of Solution of the Governing Equations
4. Structured Finite Volume Schemes
5. Unstructured Finite Volume Schemes
6. Temporal Discretisation
7. Turbulence Modelling
8. Boundary Conditions
9. Acceleration Techniques
10. Consistency, Accuracy and Stability
11. Principles of Grid Generation
12. Description of the Source Codes

What People are Saying About This

From the Publisher

Provides students, engineers, and scientists with the essential knowledge of modern computational fluid dynamics techniques required to write code or understand commercial codes

From the B&N Reads Blog

Customer Reviews