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Essentials of Fluidization /

Detalles Bibliográficos
Clasificación:Libro Electrónico
Autores principales: Grace, John R. (Autor), Bi, Xiaotao (Autor), Ellis, Naoko (Autor)
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Weinheim : Wiley-VCH, 2020.
Temas:
Acceso en línea:Texto completo

MARC

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245 1 0 |a Essentials of Fluidization /  |c John R. Grace, Xiaotao Bi, Naoko Ellis. 
264 1 |a Weinheim :  |b Wiley-VCH,  |c 2020. 
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505 0 |a Cover -- Title Page -- Copyright -- Contents -- Preface -- Acknowledgement -- Chapter 1 Introduction, History, and Applications -- 1.1 Definition and Origins -- 1.2 Terminology -- 1.3 Applications -- 1.4 Other Reasons for Studying Fluidized Beds -- 1.5 Sources of Information on Fluidization -- References -- Chapter 2 Properties, Minimum Fluidization, and Geldart Groups -- 2.1 Introduction -- 2.2 Fluid Properties -- 2.2.1 Gas Properties -- 2.2.2 Liquid Properties -- 2.3 Individual Particle Properties -- 2.3.1 Particle Diameter -- 2.3.2 Particle Shape -- 2.3.3 Density and Internal Porosity 
505 8 |a 2.3.4 Surface Roughness -- 2.3.5 Terminal Settling Velocity -- 2.3.6 Coefficients of Restitution (Particle-Particle and Particle-Wall) -- 2.3.7 Dielectric Constant and Electrical Conductivity -- 2.3.8 Thermal Properties -- 2.4 Bulk Particle Properties -- 2.4.1 Mean Particle Diameter and Particle Size Distribution -- 2.4.2 Bulk Density, Voidage, and ""Flowability -- 2.5 Minimum Fluidization Velocity -- 2.5.1 Measuring Umf Experimentally -- 2.5.1.1 Pressure Drop vs. Superficial Velocity Method -- 2.5.1.2 Other Experimental Methods of Determining Umf Experimentally 
505 8 |a 2.5.2 Predicting Umf Based on Particle and Fluid Properties -- 2.5.3 Other Factors Influencing the Minimum Fluidization Velocity -- 2.6 Geldart Powder Classification for Gas Fluidization -- 2.7 Voidage at Minimum Fluidization -- References -- Chapter 3 Liquid Fluidization -- 3.1 Introduction -- 3.2 Field of Existence -- 3.3 Overall Behaviour -- 3.4 Superficial Velocity-Voidage Relationship -- 3.5 Particle Segregation and Mixing -- 3.6 Layer Inversion Phenomena -- 3.6.1 Predicting the Layer Inversion Voidage (via the Particle Segregation Model) -- 3.6.2 Layer Inversion Velocity 
505 8 |a 3.7 Heat and Mass Transfer -- 3.7.1 Interphase Transfer -- 3.7.2 Bed-to-Surface Transfer -- 3.8 Distributor Design -- References -- Chapter 4 Gas Fluidization Flow Regimes -- 4.1 Onset of Fluidization -- 4.2 Onset of Bubbling Fluidization -- 4.3 Onset of Slugging Fluidization -- 4.4 Onset of Turbulent Fluidization -- 4.5 Termination of Turbulent Fluidization -- 4.6 Fast Fluidization and Circulating Fluidized Bed -- 4.7 Flow Regime Diagram for Gas-Solid Fluidized Beds -- 4.8 Generalized Flow Diagram for Gas-Solid Vertical Transport 
505 8 |a 4.9 Effect of Pressure and Temperature on Flow Regime Transitions -- References -- Chapter 5 Experimental Investigation of Fluidized Bed Systems -- 5.1 Introduction -- 5.1.1 Design Goals -- 5.1.2 Purpose of Experiments -- 5.2 Configuration and Design -- 5.2.1 Column Material -- 5.2.2 Distributor Plate -- 5.2.3 Plenum Chamber -- 5.2.4 Feeding System (See Also Chapter 11) -- 5.2.4.1 Hopper Design -- 5.2.5 Auxiliary Components -- 5.2.5.1 Secondary Injection of Fluid -- 5.3 Fluidizability and Quality of Fluidization -- 5.3.1 Characterization of Flowability of Particles 
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700 1 |a Bi, Xiaotao,  |e author. 
700 1 |a Ellis, Naoko,  |e author. 
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