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Numerical Simulation of Multiphase Reactors with Continuous Liquid Phase
1st Edition - June 17, 2014
Authors: Chao Yang, Zai-Sha Mao
Language: English
Hardback ISBN:9780080999197
9 7 8 - 0 - 0 8 - 0 9 9 9 1 9 - 7
eBook ISBN:9780124115798
9 7 8 - 0 - 1 2 - 4 1 1 5 7 9 - 8
Numerical simulation of multiphase reactors with continuous liquid phase provides current research and findings in multiphase problems, which will assist researchers and engineers…Read more
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Numerical simulation of multiphase reactors with continuous liquid phase provides current research and findings in multiphase problems, which will assist researchers and engineers to advance this field. This is an ideal reference book for readers who are interested in design and scale-up of multiphase reactors and crystallizers, and using mathematical model and numerical simulation as tools.
Yang and Mao’s book focuses on modeling and numerical applications directly in the chemical, petrochemical, and hydrometallurgical industries, rather than theories of multiphase flow. The content will help you to solve reacting flow problems and/or system design/optimization problems. The fundamentals and principles of flow and mass transfer in multiphase reactors with continuous liquid phase are covered, which will aid the reader’s understanding of multiphase reaction engineering.
Provides practical applications for using multiphase stirred tanks, reactors, and microreactors, with detailed explanation of investigation methods
Presents the most recent research efforts in this highly active field on multiphase reactors and crystallizers
Covers mathematical models, numerical methods and experimental techniques for multiphase flow and mass transfer in reactors and crystallizers
Chemical and petrochemical engineers; graduate and undergraduate students; engineers in chemical and petrochemical, hydrometallurgical and pharmaceutical scientists
Chapter 1: Introduction
Chapter 2: Fluid flow and mass transfer on particle scale
Abstract
2.1. Introduction
2.2. Theoretical basis
2.3. Numerical methods
2.4. Buoyancy-driven motion and mass transfer of a single particle
2.5. Mass transfer-induced Marangoni effect
2.6. Behavior of particle swarms
2.7. Single particles in shear flow and extensional flow
2.8. Summary and perspective
Nomenclature
Chapter 3: Multiphase stirred reactors
Abstract
3.1. Introduction
3.2. Mathematical models and numerical methods
3.3. Two-phase flow in stirred tanks
3.4. Three-phase flow in stirred tanks
3.5. Summary and perspective
Nomenclature
Chapter 4: Airlift loop reactors
Abstract
4.1. Introduction
4.2. Flow regime identification
4.3. Mathematical models and numerical methods
4.4. Hydrodynamics and transport in airlift loop reactors
4.5. Macromixing and micromixing
4.6. Guidelines for design and scale-up of airlift loop reactors
4.7. Summary and perspective
Nomenclature
Chapter 5: Preliminary investigation of two-phase microreactors
Abstract
5.1. Introduction
5.2. Mathematical models and numerical methods
5.3. Simulation using lattice Boltzmann method
5.4. Experimental
5.5. Summary and perspective
Nomenclature
Chapter 6: Crystallizers: CFD–PBE modeling
Abstract
6.1. Introduction
6.2. Mathematical models and numerical methods
6.3. Crystallizer modeling procedures
6.4. Macromixing and micromixing
6.5. Summary and perspective
Nomenclature
No. of pages: 320
Language: English
Edition: 1
Published: June 17, 2014
Imprint: Academic Press
Hardback ISBN: 9780080999197
eBook ISBN: 9780124115798
CY
Chao Yang
Institute of Process Engineering, Chinese Academy of Sciences
Affiliations and expertise
Institute of Process Engineering, Chinese Academy of Sciences
ZM
Zai-Sha Mao
Institute of Process Engineering, Chinese Academy of Sciences
Affiliations and expertise
Institute of Process Engineering, Chinese Academy of Sciences
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