<DIV><DIV>Geared toward students and professionals in the fields of engineering, physics, chemistry, geophysics, and applied mathematics, this volume offers a unified treatment and critical review of the literature related to the fluid dynamics, heat transfer, and mass transfer of single bubbles, dr
Multiphase Flow Analysis Using Population Balance Modeling. Bubbles, Drops and Particles
β Scribed by Guan Heng Yeoh, Dr Chi Pok Cheung and Jiyuan Tu (Auth.)
- Publisher
- Elsevier Science
- Year
- 2014
- Tongue
- English
- Leaves
- 368
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Table of Contents
Content:
Front Matter, Page iii
Copyright, Page iv
Preface, Page ix
Foreword, Pages xi-xii
Acknowledgments, Page xiii
Introduction, Page xv
Chapter 1 - Introduction, Pages 1-15
Chapter 2 - Computational Multiphase Fluid Dynamics Framework, Pages 17-67
Chapter 3 - Population Balance ApproachβA Generic Framework, Pages 69-90
Chapter 4 - Mechanistic Models for GasβLiquid/LiquidβLiquid Flows, Pages 91-136
Chapter 5 - Mechanistic Models for GasβParticle LiquidβParticle Flows, Pages 137-168
Chapter 6 - Solution Methods and Turbulence Modeling, Pages 169-261
Chapter 7 - Some Applications of Population Balance with Examples, Pages 263-327
Chapter 8 - Future of the Population Balance Approach, Pages 329-338
References, Pages 339-352
Index, Pages 353-365
π SIMILAR VOLUMES
A vast body of literature dealing with bubbles, drops, and solid particles has grown up in engineering, physics, chemistry, geophysics, and applied mathematics. The principal objective of this book is to give a comprehensive critical review of this literature as it applies to the fluid dynamics, hea
<p><P>The book summarises the outcom of a priority research programme: "Analysis, Modelling and Computation of Multiphase Flows". The results of 24 individual research projects are presented. The main objective of the research programme was to provide a better understanding of the physical basis for
Multiphase Flows with Droplets and Particles provides an organized, pedagogical study of multiphase flows with particles and droplets. This revised edition presents new information on particle interactions, particle collisions, thermophoresis and Brownian movement, computational techniques and codes