Mixed or multiphase flows of solid/liquid or solid/gas are commonly found in many industrial fields, and their behavior is complex and difficult to predict in many cases. The use of computational fluid dynamics (CFD) has emerged as a powerful tool for the understanding of fluid mechanics in multipha
Computational Techniques for Multiphase Flows. Basics and Applications
β Scribed by Guan Heng Yeoh and Jiyuan Tu (Auth.)
- Publisher
- Butterworth-Heinemann
- Year
- 2010
- Tongue
- English
- Leaves
- 643
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Synopsis
Content:
Copyright, Page iv
Preface, Pages xi-xiii
Chapter 1 - Introduction, Pages 1-20
Chapter 2 - Governing Equations and Boundary Conditions, Pages 21-94
Chapter 3 - Solution Methods for Multi-Phase Flows, Pages 95-242
Chapter 4 - GasβParticle Flows, Pages 243-311
Chapter 5 - LiquidβParticle Flows, Pages 313-349
Chapter 6 - GasβLiquid Flows, Pages 351-456
Chapter 7 - Free Surface Flows, Pages 457-500
Chapter 8 - Freezing/Solidification, Pages 501-539
Chapter 9 - Three-Phase Flows, Pages 541-566
Chapter 10 - Future Trends in Handling Turbulent Multi-Phase Flows, Pages 567-601
Appendix A - Full Derivation of Conservation Equations, Pages 603-606
References, Pages 607-626
Index, Pages 627-643
π SIMILAR VOLUMES
Computational Techniques for Multiphase Flows, Second Edition, provides the latest research and theories covering the most popular multiphase flows The book begins with an overview of the state-of-the-art techniques for multiple numerical methods in handling multiphase flow, compares them, and final
This book is the maiden volume in a new series devoted to lectures delivered through the annual seminars βShort Courses on Multiphase Flow,β held primarily at ETH Zurich continuously since 1984. The Zurich short courses, presented by prominent specialists in the various topics covered, have attracte