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气固流化床内两相流动的数值模拟

Abstract第4页
摘要第5-9页
Chapter 1 Introduction第9-18页
    1.1 Motivation第9页
    1.2 Literature review第9-14页
        1.2.1 Gas-solid fluidized bed第9-12页
        1.2.2 Basics of fluidization第12-14页
        1.2.3 Advantages and disadvantages of fluidized beds第14页
        1.2.4 Applications of fluidization第14页
    1.3 Geldart classification of particles第14-16页
        1.3.1 Group A第15页
        1.3.2 Group B第15页
        1.3.3 Group C第15页
        1.3.4 Group D第15-16页
    1.4 Objectives of the present study第16-17页
    1.5 Organization of the thesis第17-18页
Chapter 2 Theory and Mathematics of Multiphase Flow第18-29页
    2.1 Basics of multiphase flow第18-19页
    2.2 Basic approaches to multiphase flow modeling第19页
        2.2.1 Euler-Lagrange approach第19页
        2.2.2 Euler-Euler approach第19页
    2.3 Application of multiphase approaches in research第19-20页
    2.4 The Eulerian model第20页
    2.5 Description of mathematical model第20-27页
        2.5.1 Continuity equation第20-21页
        2.5.2 Momentum equations第21页
        2.5.3 Solid shear stresses第21页
        2.5.4 Collisional viscosity第21-22页
        2.5.5 Kinetic or granular viscosity第22页
            2.5.5.1 Syamlal et.al model第22页
            2.5.5.2 Gidaspow et.al model第22页
        2.5.6 Bulk viscosity of the solid第22页
        2.5.7 Frictional viscosity第22-23页
        2.5.8 Frictional pressure第23页
        2.5.9 Granular temperature第23-24页
        2.5.10 Solid pressure第24页
        2.5.11 Radial distribution function第24-26页
        2.5.12 Gas-solid drag models第26-27页
            2.5.12.1 Syamlal O’Brien model第26页
            2.5.12.2 Wen and Yu model第26-27页
            2.5.12.3 Ergun drag model第27页
            2.5.12.4 Gidaspow drag model第27页
    2.6 Turbulence modeling第27-29页
Chapter 3 Simulation Procedure in FLUENT第29-35页
    3.1 Experimental setup第29页
    3.2 General model description第29-31页
    3.3 Computational fluid dynamics modeling setup第31-35页
        3.3.1 Geometry definition第32页
        3.3.2 Mesh generation第32-33页
        3.3.3 Zone/Boundary setting第33页
        3.3.4 FLUENT setup第33页
        3.3.5 Defining the models第33-34页
        3.3.6 Executing the FLUENT code第34-35页
Chapter 4 Two Dimensional Simulation Results第35-60页
    4.1 Initial and boundary conditions第35页
    4.2 Simulation strategy第35-36页
    4.3 Simulation scheme第36-37页
    4.4 Effect of different drag and granular viscosity models第37-43页
        4.4.1 Contours of instantaneous volume fraction第37-39页
        4.4.2 Bed pressure drop analysis第39-40页
            4.4.2.1 Along the vertical direction第39-40页
            4.4.2.2 Along the horizontal direction第40页
        4.4.3 Particles velocity analysis第40-42页
            4.4.3.1 Velocity magnitude analysis第40-41页
            4.4.3.2 Radial velocity analysis第41-42页
        4.4.4 Solid volume fraction analysis第42-43页
    4.5 Effect of wall boundary condition for the particles第43-49页
        4.5.1 Contours of instantaneous volume fraction第43-45页
        4.5.2 Bed pressure drop analysis第45-46页
            4.5.2.1 Along the vertical direction第45页
            4.5.2.2 Along the horizontal direction第45-46页
        4.5.3 Particle velocity analysis第46-48页
            4.5.3.1 Velocity magnitude analysis第46-47页
            4.5.3.2 Radial velocity analysis第47-48页
        4.5.4 Solid volume fraction analysis第48-49页
    4.6 Effect of granular temperature model第49-57页
        4.6.1 Contours of instantaneous volume fraction第49-52页
        4.6.2 Bed pressure drop analysis第52-53页
            4.6.2.1 Along the vertical direction第52页
            4.6.2.2 Along the horizontal direction第52-53页
        4.6.3 Particle velocity analysis第53-57页
            4.6.3.1 Velocity magnitude analysis第53-55页
            4.6.3.2 Radial velocity analysis第55-57页
        4.6.4 Solid volume fraction analysis第57页
    4.7 Effect of the minimum fluidization velocity第57-60页
Chapter 5 Three Dimensional Simulation Results第60-68页
    5.1 Simulation strategy第60-61页
    5.2 Contours of instantaneous volume fraction第61-62页
    5.3 Bed pressure drop analysis第62-63页
        5.3.1 Along the vertical direction第62-63页
        5.3.2 Along the horizontal direction第63页
    5.4 Particle velocity analysis第63-66页
        5.4.1 Velocity magnitude analysis第64页
        5.4.2 Radial velocity analysis第64-65页
        5.4.3 Axial velocity analysis第65-66页
    5.5 Solid volume fraction analysis第66-68页
Summary and Conclusion第68-70页
References第70-75页
Acknowledgements第75-77页
Curriculum Vita第77页

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