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Evaluation of Equivalent Linear Methods for Seismic Response Analysis of Base Isolated Structures : 면진 구조물 응답 해석을 통한 등가선형 방법의 평가

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dc.contributor.advisor이철호-
dc.contributor.author김서연-
dc.date.accessioned2017-07-14T04:06:56Z-
dc.date.available2017-07-14T04:06:56Z-
dc.date.issued2017-02-
dc.identifier.other000000141874-
dc.identifier.urihttps://hdl.handle.net/10371/124166-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 건축학과, 2017. 2. 이철호.-
dc.description.abstractBase isolation system protects structures against severe earthquakes by inserting isolators with low lateral stiffness between supporting points and superstructure so that most of deformation occurs at isolators. In the design of base isolation system, idealized bilinear models have been generally used to represent the hysteretic behavior of isolators such as high damping rubber, lead-rubber bearings and friction pendulum. In various design standards and codes including IBC 2015, FEMA-440 and Eurocode 8, equivalent linear (EL) methods using equivalent viscous damping and equivalent stiffness are permitted for seismically isolated structures when specific conditions are met.
In this study, estimation accuracy of five existing EL models are evaluated for the multi-degree-of-freedom structure isolated with lead-rubber bearings. Analyses including wide range of ductility ratio were carried out by considering post-to-yield stiffness ratio and isolated period as variables. Earthquake data consist of 20 sets of recorded or simulated data provided from FEMA. Relative displacement of the base floor and absolute acceleration of roof floor are the main indexes of the structure response.
The result indicates that several EL methods estimate the relative displacement of base floor almost accurately with error ratio less than 5 percent. Relative displacement is the index that affects the structural damage, so that EL method is quite reliable method for the design in the aspect of the isolators performance. On the other hand, EL method significantly underestimates the response of the absolute acceleration which can affect the damage of the non-structural member and equipment inside of the structure. It is demonstrated that modified EL method includes structure mode is required in further researches.
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dc.description.tableofcontentsChapter 1. Introduction 1
1.1 Concept of Base Isolation 1
1.2 General Properties of Base Isolated Structures 3
1.3 Typical Types of Base Isolators 5
1.3.1 Friction pendulum 5
1.3.2 Laminated-rubber bearings 6
1.3.3 Lead-rubber bearings 8
1.4 Objectives and Scope 10

Chapter 2. Hysteretic Behavior of Base Isolator 13
2.1 Nonlinear Hysteretic Behavior of Isolator 13
2.2 Equivalent Linearization of Nonlinear Hysteresis 14
2.3 Equivalent Linear (EL) Methods 16
2.3.1 EL methods base upon secant stiffness concept 19
2.3.2 EL methods base upon empirical formulas 23

Chapter 3. Critical Evaluation of EL Methods 29
3.1 General 29
3.1.1 Analysis model 29
3.1.2 Earthquake ground motions 30
3.1.3 Parameters included in this study 34
3.1.4 Evaluation procedure 37
3.2 Responses of Equivalent Linear Analysis and Nonlinear Analysis 38
3.2.1 Analysis indicators 38
3.2.2 Relative displacement of roof floor 39
3.2.3 Absolute acceleration of base floor 46
3.3 Discussions 51

Chapter 4. Analysis of Story Drift and Floor Acceleration 53
4.1 General 53
4.2 Responses of Multistory Structure 54
4.3 Detailed Analysis of Representative Examples 64
4.4 Discussion 71

Chapter 5. Conclusions 73

References 75
Appendix A 79
국 문 초 록 83
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dc.formatapplication/pdf-
dc.format.extent2466647 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectBase isolation-
dc.subjectNonlinear dynamic analysis-
dc.subjectEquivalent linear analysis-
dc.subjectLead-rubber bearings-
dc.subjectStructure response-
dc.subject.ddc690-
dc.titleEvaluation of Equivalent Linear Methods for Seismic Response Analysis of Base Isolated Structures-
dc.title.alternative면진 구조물 응답 해석을 통한 등가선형 방법의 평가-
dc.typeThesis-
dc.contributor.AlternativeAuthorKim, Seo Yeon-
dc.description.degreeMaster-
dc.citation.pages85-
dc.contributor.affiliation공과대학 건축학과-
dc.date.awarded2017-02-
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