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立面收进框架—剪力墙高层建筑结构抗震性能分析

ABSTRACT第4-5页
摘要第6-11页
1 INTRODUCTION第11-20页
    1.1 USING SETBACK PURPOSE第12-13页
    1.2 BACKGROUND RESEARCH OF TALL BUILDING STRUCTURAL SYSTEMS第13-17页
        1.2.1 Case Study 1第13页
        1.2.2 Case Study 2第13-14页
        1.2.3 Case Study 3第14页
        1.2.4 Case Study 4第14-15页
        1.2.5 Case Study 5第15页
        1.2.6 Case Study 6第15-16页
        1.2.7 Case Study 7第16页
        1.2.8 Case Study 8第16-17页
    1.3 RESEARCH PURPOSES第17-18页
    1.4 THESIS STRUCTURE第18-19页
    1.5 SUMMARY第19-20页
2 FRAME-SHEAR WALL STRUCTURE SYSTEMS第20-33页
    2.1 FRAME-SHEAR WALL STRUCTURE SYSTEM’S DEFORMATION CHARACTERISTICS第20-21页
    2.2 FRAME-SHEAR WALL STRUCTURE SYSTEM GENERAL FORCES CHARACTERISTICS第21-22页
        2.2.1 Relationship between Frame-Shear Wall’s Shear Forces Distributions and λ Factor第22页
        2.2.2 Shear Forces of Frame-Shear Wall Structure System Distributions Characteristic第22页
    2.3 FRAME-SHEAR WALL STRUCTURE SYSTEM INTERNAL FORCES’ CALCULATIONS第22-32页
        2.3.1 The basic assumptions第22-23页
        2.3.2 The Calculations Diagrams第23页
        2.3.3 Hinge System Calculations第23-26页
        2.3.4 Rigid System Calculations第26-28页
        2.3.5 Frame-Shear Wall System Resisting Seismic Calculation Steps第28-29页
        2.3.6 Frame-Shear Wall System Torsion Calculation Steps第29-30页
        2.3.7 Mass, Stiffness and Torsion Calculations第30-32页
    2.4 SUMMERY第32-33页
3 RESISTING SEISMIC ANALYSIS第33-52页
    3.1 TALL BUILDING RESISTING SEISMIC ANALYSIS第33-36页
        3.1.1 Seismic Actions Characteristics第33页
        3.1.2 Three Seismic Design Levels第33-34页
        3.1.3 Structure Function Importance第34页
        3.1.4 Resisting Seismic Objectives第34-35页
        3.1.5 I and 2) Relationship第35页
        3.1.6 Resisting Seismic Design’s Stages第35-36页
    3.2 STRUCTURE SEISMIC RESPONSE ANALYSIS METHODS第36-38页
        3.2.1 Response Spectrum Method第36-38页
        3.2.2 Disadvantage of Response Spectrum Method第38页
    3.3 ELASTIC ANALYSIS METHOD第38-40页
        3.3.1 Pushover Analysis Method第38-39页
        3.3.2 Advantage and Disadvantage of Pushover Analysis Method第39页
        3.3.3 Time History Analysis Method第39-40页
    3.4 DYNAMIC ELASTIC ANALYSIS METHOD PRINCIPLES第40-42页
    3.5 BASIC STEP OF DYNAMIC ELASTIC ANALYSIS METHOD第42页
    3.6 STRUCTURE VIBRATION CALCULATION MODELS第42-44页
        3.6.1 Slab (Layer) Model第42-43页
        3.6.2 Bar System Model第43-44页
        3.6.3 Finite Element Model第44页
    3.7 STRUCTURE ELASTIC-PLASTIC CONSTITUTIVE MODELS第44-45页
    3.8 SOLUTION METHOD FOR STRUCTURAL DYNAMIC EQUILIBRIUM第45-49页
        3.8.1 Linear Acceleration Method第45-47页
        3.8.2 Wilson-θ Method第47页
        3.8.3 Newmark Method第47-48页
        3.8.4 Dynamic analysis Method Advantages and Disadvantages Points第48-49页
    3.9 THE REQUIREMENTS TO SELECTING SEISMIC ACCELERATION第49-51页
        3.9.1 International Acceleration Records第49-50页
        3.9.2 Local Acceleration Records第50页
        3.9.3 This Study Using Acceleration Records第50-51页
        3.9.4 Ground Motion Parameters第51页
    3.10 SUMMARY第51-52页
4 FINITE ELEMENT SOFTWARE SAP2000第52-55页
    4.1 TALL BUILDING STRUCTURE SPACING ANALYSIS METHOD第52-53页
    4.2 FINITE ELEMENT V16.1 SAP2000第53-54页
    4.3 SUMMARY第54-55页
5 LANAO HUAYUAN TALL BUILDING RESISTING SEISMIC RESPONSE ANALYSES第55-78页
    5.1 TALL BUILDING IRREGULAR CHARACTERISTICS第55-56页
        5.1.1 Irregularity Standards of the Tall Building第55-56页
    5.2 CONTROL PARAMETERS OF IRREGULAR TALL BUILDING SEISMIC ANALYSIS第56-57页
    5.3 EXISTING LANAO HUAYUAN TALL BUILDING STRUCTURE CONCEPT第57-61页
        5.3.1 Horizontal Plan Setbacks Design第58页
        5.3.2 Elevations’ Setbacks Design第58-59页
        5.3.3 Lanao Huayuan Tall Building storeys’ Functions and Heights第59-61页
    5.4 EXISTING LANAO HUAYUAN MODEL VIBRATION RATIO ANALYSIS第61-63页
    5.5 MODEL MASS AND STIFFNESS CALCULATIONS第63-64页
    5.6 MODEL DISPLACEMENT ANALYSES第64-68页
        5.6.1 Model Roof Displacement Analyses第64-65页
        5.6.2 Model Storey Drift and Drift Angle Analyses第65-67页
        5.6.3 The Displacement Ratio第67-68页
    5.7 MODEL INTERNAL FORCES ANALYSIS第68-76页
        5.7.2 X and Y Directions Model’s Shear Forces第69-72页
        5.7.3 Model X and Y Directions Bending Moment Forces第72-74页
        5.7.4 Model X and Y Directions Torsion Forces第74-75页
        5.7.5 Model Storey shear bearing capacity ratio's γ_2 Analysis第75-76页
    5.8 结果分析第76-77页
    5.9 SUMMERY第77-78页
6 LANAO HUAYUAN TALL BUILDING WITH AND WITHOUT SETBACKRESISTING SEISMIC ANALYSES第78-91页
    6.1 LANAO HUAYUAN TALL BUILDING MODIFICATIONS CONCEPT第78-79页
    6.2 MODELS'RESISTING SEISMIC PERFORMANCE ANALYSES第79-90页
        6.2.1 Models’ Displacements Analyses第79-83页
        6.2.2 Model Frame Columns Internal Forces Analyses第83-85页
        6.2.3 Model Frame Special Beams Internal Forces Analyses第85-88页
        6.2.4 The Model Base Foundations’ Reactions第88-90页
    6.3 结果分析第90页
    6.4 SUMMERY第90-91页
7 CONCLUSIONS AND PERSPECTIVES第91-95页
    7.1 CONCLUSIONS第91-93页
    7.1 结论第93-94页
    7.2 PERSPECTIVES:第94页
    7.2 展望第94-95页
ACKNOWLEDGEMENT第95-96页
REFERENCES第96-99页
攻读学位期间的研究成果第99页

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