ISBN-10:
0080467334
ISBN-13:
9780080467337
Pub. Date:
11/30/2009
Publisher:
Elsevier Science
Computational Techniques for Multiphase Flows

Computational Techniques for Multiphase Flows

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Product Details

ISBN-13: 9780080467337
Publisher: Elsevier Science
Publication date: 11/30/2009
Edition description: New Edition
Pages: 664
Product dimensions: 6.20(w) x 9.10(h) x 1.40(d)

About the Author

Guan Heng Yeoh is an Associate Professor at the School of Mechanical and Manufacturing Engineering, UNSW, and a Senior Research Scientist at ANSTO. He is the founder and Editor of the Journal of Computational Multiphase Flows and the Group Leader of Computational Thermal-Hydraulics of OPAL Research Reactor, ANSTO. He has approximately 180 publications including 7 books, 10 book chapters, 83 journal articles, and 80 conference papers with an H-index 16 and over 800 citations. His research interests are computational fluid dynamics (CFD); numerical heat and mass transfer; turbulence modelling using Reynolds averaging and large eddy simulation; combustion, radiation heat transfer, soot formation and oxidation, and solid pyrolysis in fire engineering; fundamental studies in multiphase flows: free surface, gas-particle, liquid-solid (blood flow and nanoparticles), and gas-liquid (bubbly, slug/cap, churn-turbulent, and subcooled nucleate boiling flows); computational modelling of industrial systems of single-phase and multiphase flows.

Jiyuan Tu has 33 years of industry experience in this field. He is an author on 9 book publications, is an editor on 6 journals, has over 300 journal articles published and is in service of expert committee members to the United Nations (UN) and International Atomic Energy Agency (IAEA). In the last 10 years he has won 6 awards for excellence in research and teaching. His areas of research and consulting expertise are: Computational fluid dynamics (CFD) and numerical heat transfer (NHT); computational and experimental modelling of multiphase flows; fluid-structure interaction; biomedical engineering: optimal design of drug delivery devices; prediction of aerosol deposition in human airways and nasal cavity; and simulation of blood flow in arteries.

Table of Contents

1. Introduction 2. Governing Equations and Boundary Conditions 3. Solution Methods for Multiphase Flows 4. Gas-particle Flows 5. Liquid - Particle Flows 6. Gas-LiquidFlows 7. Free Surface Flows 8. Freezing/Solidification 9. Three Phase flows 10.Future Trends in Handling Turbulent Multiphase Flows

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