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V形腔中的自然对流和传热

Acknowledgements第6-7页
ABSTRACT第7-8页
Chinese Abstract第9-14页
Nomenclature第14-20页
1 Introduction第20-54页
    1.1 Problem description第20-24页
        1.1.1 Flow phenomena in a V-shaped topography第20-22页
        1.1.2 Natural convection in a V-shaped cavity第22-24页
    1.2 Literature Review第24-48页
        1.2.1 Natural phenomena on an inclined topography第24-26页
        1.2.2 Natural convection on an incline wall or in a cavity with an inclined wall or more第26-36页
        1.2.3 Analytical methods of natural convection第36-48页
    1.3 Summary of literature review第48-49页
    1.4 Objectives and outline of the present study第49-54页
2 Analytical,numerical and experimental procedures第54-72页
    2.1 Formulation第54-58页
        2.1.1 Governing equations第54-55页
        2.1.2 Appropriate assumptions第55-58页
    2.2 Scaling Analysis第58-60页
    2.3 Numerical approach第60-66页
        2.3.1 Numerical Schemes第61-65页
        2.3.2 Convergence criterion第65-66页
    2.4 Experimental procedure第66-69页
        2.4.1 Experimental model第66-68页
        2.4.2 Measurement techniques第68-69页
        2.4.3 Experimental arrangements第69页
    2.5 Summary第69-72页
3 Transient natural convection of initially stratified fluid in a V-shaped cavity第72-92页
    3.1 Physical model and scaling analysis第72-77页
    3.2 Validation第77-78页
    3.3 Development of transient natural convection第78-87页
        3.3.1 Flow structure第79-81页
        3.3.2 Temperature and velocity第81-84页
        3.3.3 Time of the stratification breakup第84-87页
    3.4 Heat and mass transfer第87-90页
    3.5 Summary第90-92页
4 Transition to an unsteady flow in a two-dimensional V-shaped cavity第92-126页
    4.1 Transition to an unsteady flow for air第93-108页
        4.1.1 Mesh and time step第93-94页
        4.1.2 Validation第94-95页
        4.1.3 Numerical results and discussion第95-106页
        4.1.4 Heat and mass transfer第106-108页
    4.2 Transition to an unsteady flow for water第108-124页
        4.2.1 Mesh and time step第108-110页
        4.2.2 Validation第110页
        4.2.3 Numerical results and discussion第110-122页
        4.2.4 Heat and mass transfer第122-124页
    4.3 Summary第124-126页
5 Transition to an unsteady flow in a three-dimensional V-shaped cavity第126-164页
    5.1 Physical model and formula第126-128页
    5.2 Transition to an unsteady flow for air第128-145页
        5.2.1 Mesh and time step第128-129页
        5.2.2 Validation第129-130页
        5.2.3 Numerical results and discussion第130-143页
        5.2.4 Heat and mass transfer第143-145页
    5.3 Transition to an unsteady flow for water第145-161页
        5.3.1 Mesh and time step第145-146页
        5.3.2 Validation第146-147页
        5.3.3 Numerical results and discussion第147-159页
        5.3.4 Heat and mass transfer第159-161页
    5.4 Summary第161-164页
6 Experimental study of the transition to an unsteady flow第164-182页
    6.1 Flow visualizations and temperature measurements with thermistor第165-181页
        6.1.1 Steady state第167-168页
        6.1.2 Unsteady state第168-181页
    6.2 Summary第181-182页
7 Conclusions第182-188页
    7.1 Summary of the present research第182-186页
        7.1.1 Natural convection of initially stratified fluid第183-184页
        7.1.2 Transition to an unsteady flow第184-186页
    7.2 Future studies第186-188页
References第188-202页
The author's resume and research results obtained during his Ph.D第202-206页
学位论文数据集第206页

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