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地热井管系统热力学分析

ACKNOWLEDGEMENT第5-6页
摘要第6-7页
ABSTRACT第7页
1 INTRODUCTION AND LITERATURE REV[EW第17-31页
    1.1 DEVELOPMENT OF GEOTHERMAL SYSTEM第17-19页
    1.2 CLASSIFICATION OF GEOTHERMAL RESOURCES第19-20页
    1.3 ORGANIZATION OF DESIGN TEAM第20-21页
    1.4 TYPES OF THERMAL WATERS第21-22页
    1.5 THE GEOTHERMAL SYSTEMS AND TRANSPORT MECHANISMS第22-24页
        1.5.1 Hot Dry Rock Systems第22页
        1.5.2 Enhanced Geothermal Systems第22页
        1.5.3 Deep Hydrothermal Systems第22-23页
        1.5.4 Transport Mechanism第23-24页
    1.6 PIPE SYSTEM OF GEOTHERMAL WELL第24-25页
    1.7 LITERATAURE REVIEW ON THE FAILURE OF GEOTHERMAL WELL PIPESYSTEM第25-28页
        1.7.1 Strength- yielding第25-26页
        1.7.2 Creep at high temperatures第26页
        1.7.3 Buckling第26页
        1.7.4 Fatigue第26-27页
        1.7.5 Casing failure modes and design criteria第27-28页
        1.7.6 Connection (Coupling) failure第28页
    1.8 PROBLEMS第28-29页
    1.9 SCOPE AND OBJECTIVE OF THE STUDY第29页
    1.10 ORGANIZATION OF THE CHAPTERS第29-31页
2 WELL MATERIALS,PARAMETERS,FAILURE CRITERIA AND FEM MODELLINGPROCEDURE第31-45页
    2.1 WELL MATERIALS第31-32页
        2.1.1 Casing第31页
        2.1.2 Casing Connections/joints/coupling第31页
        2.1.3 Casing grade第31-32页
        2.1.4 Cement sheath第32页
        2.1.5 Formation第32页
    2.2 MATERIAL PARAMETERS FOR NUMERICAL ANALYSIS第32-35页
        2.2.1 Young's Modulus第32-33页
        2.2.2 Poisson's Ratio第33页
        2.2.3 Thermal Conductivity第33页
        2.2.4 Specific heat第33页
        2.2.5 Density第33页
        2.2.6 Cement Sheath Band with Air Voids第33-34页
        2.2.7 Pressure of the Pipe System第34-35页
    2.3 FAILURE CRITERIA第35页
        2.3.1 Von Mises Yielding Criteria第35页
        2.3.2 Maximum Principal Stress Theory第35页
    2.4 FINITE ELEMENT MODELLING PROCEDURE第35-44页
        2.4.1 Geometry of the models第36-39页
        2.4.2 Loading第39页
        2.4.3 Boundary conditions and assumptions in FEM第39页
        2.4.4 Global Meshing of FE model第39-44页
    2.5 SUMMARY第44-45页
3 THERMO-MECHANICAL ANALYSIS OF GEOTHERMAL WELL PIPE SYSTEM ATTHE START UP OF STEAM PRODUCTION第45-91页
    3.1 THEORY OF THERMO-MECHANICAL ANALYSIS第45-48页
        3.1.1 Temperature field第45页
        3.1.2 Initial and boundary conditions第45-46页
        3.1.3 Mathematical expression for thermo-mechanical analysis第46-48页
    3.2 FIVE WELL SECTION CASES FOR THE PIPE SYSTEM ANALYSIS第48-49页
        3.2.1 Boundary conditions第49页
    3.3 MODELLING AND COMPARISON BETWEEN GEOMETERIC WELL SECTIONTYPES OF JOINTED AND UNJOINTED CASING第49-57页
        3.3.1 Temperature field analysis第49-52页
        3.3.2 Stress field analysis第52-57页
    3.4 MODELLING AND COMPARISON BETWEEN WELL SECTIONS OF JOINTEDCASING AND JOINTED CASING WITH AIR-VOIDED CEMENT SHEATH BANDLOCATION NO.1第57-67页
        3.4.1 Temperature field analysis第58-61页
        3.4.2 Stress field analysis第61-67页
    3.5 MODELLING AND COMPARISON BETWEEN WELL SECTIONS TYPES OFJOINTED CASING WITH AIR VOIDS CEMENT SHEATH BAND LOCATION NO.1AND LOCATION NO.2第67-76页
        3.5.1 Temperature field analysis第67-70页
        3.5.2 Stress field analysis第70-76页
    3.6 MODELLING AND COMPARISON BETWEEN WELL SECTIONS TYPES OFJOINTED CASING WITH AIR VOIDED CEMENT SHEATH BAND LOCATION 2AND LOCATION 3第76-85页
        3.6.1 Temperature field analysis第76-79页
        3.6.2 Stress field analysis第79-85页
    3.7 CROSS SECTIONAL TEMPERATURE ANALYSIS UNDER DIFFERENTCOMBINATIONS OF THERMAL CONDUCTIVITY AND SPECIFIC HEAT第85-86页
    3.8 SUMMARY第86-91页
4 CONCLUSIONS AND RECOMMENDATIONS第91-93页
REFERENCES第93-97页
学位论文数据集第97-98页

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