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Improved Calibration of Conceptual Hydrologic Models VIA GIS Aided Approach

Preface第5-6页
Abstract (English)第6页
Abstract (Chinese)第9-14页
List of figures第14-16页
List of tables第16-18页
Glossary第18-19页
CHAPTER ONE Introduction第19-41页
    1.1 General Overview第19-21页
    1.2 Goals And Objectives第21-22页
    1.3 Literature Review第22-37页
        1.3.1 Development Of Watershed Models第22-27页
        1.3.2 Hydrologic Model Calibration第27-32页
        1.3.3 The Shuffle Complex Evolution (SCE-UA) Method第32-37页
            1.3.3.1 Structure Of The Method第32-33页
            1.3.3.2 SCE-UA Algorithm第33-34页
            1.3.3.3 Competitive Complex Evolution Algorithm第34-35页
            1.3.3.4 Properties Of The Method第35-36页
            1.3.3.5 Fixing The Algorithmic Parameters第36-37页
    1.4 Significance Of The Study第37-39页
    1.5 Research Methodology第39-41页
CHAPTER Two The Xinanjiang Model第41-52页
    2.1 Introduction第41页
    2.2 Model Structure第41-44页
    2.3 Theoretical Background Of The Xinanjiang Model第44-49页
        2.3.1 Evapotranspiration第44页
        2.3.2 Runoff Production第44-47页
        2.3.3 Runoff Separation Components第47-48页
        2.3.4 Flow Concentration In Sub Basins第48-49页
        2.3.5 Flow Routing Along Main Rivers第49页
    2.4 Discussion on parameters第49-52页
        2.4.1 Evapotranspiration Parameters第50页
        2.4.2 Runoff Production Parameters第50页
        2.4.3 Runoff Separation Parameters第50-51页
        2.4.4 Flow Concentration Parameters第51-52页
CHAPTER THREE Structural Identification Of The Xinanjiang Model第52-78页
    3.1 Introduction第52-53页
    3.2 Objective Functions第53-55页
    3.3 Model Efficiency Criteria第55-56页
    3.4 Search Termination Criteria第56-60页
        3.4.1 Function Convergence第56-57页
        3.4.2 Parameter Convergence第57页
        3.4.3 Maximum Iterations第57-60页
    3.5 Test Catchment Characteristics第60-65页
        3.5.1 Misai Catchment第60-61页
        3.5.2 Kalu Catchment第61-64页
        3.5.3 Wanjiabo Catchment第64-65页
    3.6 Calibration Trials Using Synthetic Data第65-68页
        3.6.1 Calibration Trials Using One Year Of Synthetic Data第65-67页
        3.6.2 Calibration Trials Using Five Years Of Synthetic Data第67-68页
    3.7 Calibration Trials Using Historical Data第68-69页
    3.8 Correlation Analysis第69-73页
        3.8.1 Correlation Coefficient第70-71页
        3.8.2 Analysis Of The Xinanjiang Model Parameters第71-73页
    3.9 Discussion of Results第73-77页
    3.10 Conclusions第77-78页
CHAPTER FOUR Improved Calibration Of The Xinanjiang Model第78-99页
    4.1 Improved Calibration第78页
    4.2 Calibration Trials Using The Misai Catchment Daily Data第78-83页
    4.3 Calibration Trials Using The Wanjiabo Catchment Daily Data第83-88页
    4.4 Calibration Trials Using The Kalu Catchment Daily Data第88-92页
    4.5 Calibration Trials Using Flood Events第92-95页
    4.6 Discussion Of Results第95-97页
    4.7 Conclusions第97-99页
CHAPTER FIVE Combining GIS With Conceptual Hydrologic Modeling第99-140页
    5.1 Introduction第99-102页
    5.2 Hydrological Response Unit (HRU) Concept第102-103页
    5.3 Application Domains of DEMs In Hydrology第103-120页
        5.3.1 DEM Production and Availability第103-104页
        5.3.2 Classification Levels第104-105页
        5.3.3 DEM Accuracy第105-107页
        5.3.4 Variables Derived Directly From The DEM第107-108页
        5.3.5 Watershed Delineation第108-118页
            5.3.5.1 Preprocessing of DEMs to Remove Unwanted Minimum第109-111页
            5.3.5.2 Determining the flow directions第111-114页
            5.3.5.3 Drainage Network Extraction第114-115页
            5.3.5.4 Drainage Network Topology第115-116页
            5.3.5.5 Watershed delineation procedure第116-118页
        5.3.6 Calculation Of Distributed Sub-Catchment Properties第118-119页
        5.3.7 Sub-catchment Length Alternatives第119-120页
        5.3.8 Sub-catchment Slope Alternatives第120页
    5.4 The SWAT Model第120-122页
    5.5 Research Methodology第122-123页
    5.6 The HRU Application第123-126页
    5.7 Application of the SWAT Model第126-128页
    5.8 Application of ANN第128-133页
        5.8.1 Background第129页
        5.8.2 Multi-Layer Perceptron (MLP) Network第129-131页
        5.8.3 Radial Basis Function (RBF) Network第131-132页
        5.8.4 River Flow Forecasting第132页
        5.8.5 Application To The Kalu River Upper Catchment第132-133页
    5.9 Discussion of Results第133-138页
    5.10 Conclusions第138-140页
CHAPTER SIX Summery And Conclusions第140-145页
    6.1 Summery第140-143页
    6.2 Conclusions第143-144页
    6.3 Future Research第144-145页
References第145-156页
Appendix A第156-163页
    A. 1 Results Of the Xinanjiang Model Parameter Correlation Analysis第156-163页
Appendix B第163-169页
    B. 1 Verification Results Of The Lumped Application Of The Xinanjiang Model In Three Test Catchments Using Daily Data第163-166页
    B. 2 Verification Results Of The HRU Application Of The Xinanjiang Model In The Kalu Catchment Using Daily Data第166-167页
    B. 3 Verification Results Of The Swat Model Application In The Kalu Catchment Using Daily Data第167-168页
    B. 4 Verification Results Of The ANN Application In The Kalu Catchment Using Daily Data第168-169页
Appendix C第169-172页
    C. 1 Verification Results Of Application Of The Xinanjiang Model In The Misai Catchment Using Three Hourly Data第169-172页
Acknowledgements第172-174页
Publications第174-175页

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