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Finite Element Model Update by Optimizing Weighting Factors of Static and Dynamic Responses : 정적 및 동적 응답 사이의 가중치 최적화를 통한 유한요소 모델 개선

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dc.contributor.advisor고현무-
dc.contributor.author박종민-
dc.date.accessioned2017-07-14T04:18:12Z-
dc.date.available2017-07-14T04:18:12Z-
dc.date.issued2016-02-
dc.identifier.other000000132711-
dc.identifier.urihttps://hdl.handle.net/10371/124322-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 건설환경공학부, 2016. 2. 고현무.-
dc.description.abstractThis study performs a finite element model update using the natural frequency and lateral distribution factor acquired from an ambient vibration test on bridge in service. The more exact finite element model update was developed by optimizing the weighting factors of the static and dynamic responses. In this study, when updating the finite element model, the error in the lateral distribution factor is newly defined using a modal assurance criterion equation. Especially, it is important to optimize the weighting factor of static response, because static response is related to an evaluation of structure, load rating factor. The weighting factors of the lateral distribution factor and natural frequency can be optimized using a genetic algorithm which is known as finding the global solution well. The validity of the proposed method is verified by using illustrative examples whose solutions are known. Also, the load rating factor is computed when the proposed method is applied to an existing bridge. The results show that the FE model update using both static and dynamic responses yields more exact solutions than the FE model update using either static or dynamic responses alone. Also, a finite element model update with optimized weighting factors can be performed more exactly by the proposed method.-
dc.description.tableofcontents1 Introduction 1
1.1 Backgrounds and Literature Survey 1
1.2 Research Objectives 5
1.3 Overview of Dissertation 6

2 Finite Element Model Update by Using ActualBridge Responses 7
2.1 Responses Used to Finite Element Model Update 7
2.1.1 Static Responses 7
2.1.2 Dynamic Responses 8
2.2 Constructions of Objective Functions for Optimization 8
2.2.1 Definitions of Response Errors 9
2.2.2 General Meanings of Weighting Factors 10
2.3 Alternative Response for Static Response 11
2.3.1 Definition of Lateral Distribution Factor(LDF) Error 11
2.3.2 Verification of Lateral Distribution Factor AssuranceCriterion(LDFAC) 12
2.4 Optimization Method Used to Finite Element Model Update 14
2.4.1 Sequential Quadratic Programming 15
2.5 Assessment of Structural Condition 16
2.5.1 Load Rating Factor Evaluation 16

3 Optimization of Weighting Factors for FiniteElement Model Update 18
3.1 Formulation of the Objective Function for Finite Element Model Update 18
3.2 Sensitivity Check of Static and Dynamic Response Error of the Objective Function 19
3.3 Optimization of Weighting Factors using GeneticAlgorithm 21
3.4 Overall Framework of Finite Element Model Update with Optimization of Weighting Factors 22

4 Examples for Verification of Method 24
4.1 Descriptions of Illustrative Examples 24
4.1.1 Common Features of Examples 25
4.1.2 Case Study 1: Single Span Bridge with 2-girders 27
4.1.3 Case Study 2: Single Span Bridge with 5-girders 29
4.1.4 Case Study 3: Two Spans Bridge with 5-girders 31
4.2 Results of Illustrative Examples 33
4.2.1 The Results of Case Study 1 34
4.2.2 The Results of Case Study 2 37
4.2.3 The Results of Case Study 3 40
4.3 Summary of Illustrative Examples 44
4.4 Numerical Example : Yeondae Bridge 45
4.4.1 Description of Application Example : Yeondae Bridge 45
4.4.2 Finite Element Model Update by Using Optimization of Weighting Factor 46
4.4.3 Evaluation of Load Rating Factor : Yeondae Bridge 47

5 Conclusion 49

References 52

초록 54
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dc.formatapplication/pdf-
dc.format.extent1336865 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectLateral Distribution Factor-
dc.subjectFinite Element Model Update-
dc.subjectOptimizing Weighting Factors-
dc.subjectStatic and Dynamic responses-
dc.subject.ddc624-
dc.titleFinite Element Model Update by Optimizing Weighting Factors of Static and Dynamic Responses-
dc.title.alternative정적 및 동적 응답 사이의 가중치 최적화를 통한 유한요소 모델 개선-
dc.typeThesis-
dc.description.degreeMaster-
dc.citation.pages54-
dc.contributor.affiliation공과대학 건설환경공학부-
dc.date.awarded2016-02-
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