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Determination of the Load-Resistance Factors for Reliability-Based Codes by Optimization : 최적화 기법에 근거한 신뢰도기반 하중저항계수 결정

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dc.contributor.advisor이해성-
dc.contributor.author배창훈-
dc.date.accessioned2017-07-14T04:19:44Z-
dc.date.available2017-07-14T04:19:44Z-
dc.date.issued2016-08-
dc.identifier.other000000137457-
dc.identifier.urihttps://hdl.handle.net/10371/124344-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 건설환경공학부, 2016. 8. 이해성.-
dc.description.abstractIn current years, the limit state design is the general trend for bridge design specifications which suggests load-resistance factors for structural members of a bridge with dominant ultimate limit states to equally satisfy the target reliability index. To verify that existing load-resistance factors equally satisfy the target reliability index, the reliability assessment is executed for AASHTO LRFD and KHBDC-LSD by calculating the required strength which can be generated from load-resistance factors. Prior to the reliability assessment, the normalization is introduced in this study, which nominal loads and nominal resistance are expressed as the ratio to the total nominal load. The generalized reliability assessment is possible by applying the normalization without the length and the cross sectional details of a bridge related to absolute values of nominal loads. According to the reliability assessment results, both specifications do not guarantee equally the target reliability level. To resolve this problem, it is necessary to establish calibration formulation which can generate load-resistance factors to satisfy evenly the target reliability index. By applying this calibration process, revised load-resistance factors are proposed for both specifications.
In this study, the exact values of load-resistance factors are calculated by applying the inverse reliability analysis given statistical properties of variables. From the results, ultimate limit state regions determined newly. In addition, optimization process within each ultimate limit state region is carried out for proposed load-resistance factors. Load-resistance factors are decided relatively by optimization following the variance of resistance and those of loads. According to the reliability assessment with proposed load-resistance factors, both specifications satisfy the target reliability level equally. This study is thoroughly based on statistical properties of load-resistance variables, which means there is a need of the strict research about statistical properties of variables considered in the bridge design preveniently.
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dc.description.tableofcontents1. Introduction 1
1.1. Research Background 1
1.2. Objectives of Research 2
1.3. Organization of Thesis 3

2. Basic Theory of Reliability Analysis 4
2.1. Basic Theory of Statistics 4
2.1.1. Terminology for Statistical Properties of Random Variables 4
2.1.2. Typical Probability Distributions 5
2.2. Reliability Analysis 7

3. Reliability Analysis with Current Bridge Design Specifications 12
3.1. Normalization 12
3.2. AASHTO LRFD (2014) 16
3.2.1. AASHTO LRFD Specification 16
3.2.2. Statistical Properties for AASHTO LRFD 18
3.2.3. Reliability Analysis with AASHTO LRFD 19
3.3. KHBDC-LSD (2014) 24
3.3.1. KHBDC-LSD Specification 24
3.3.2. Statistical Properties for KHBDC-LSD 26
3.3.3. Reliability Analysis with KHBDC-LSD 27

4. Inverse Reliability Analysis for Load-Resistance Factors 31
4.1 Inverse Reliability Analysis 31
4.2 Load-Resistance Factors 36
4.2.1 Load-Resistance Factors by AASHTO 38
4.2.2 Load-Resistance Factors by KHBDC-LSD 56

5. Code Calibration by Optimization 74
5.1. Optimization 74
5.1.1. General Rules 74
5.1.2. Optimization Process 75
5.2. Proposed Load-Resistance Factors for Design Codes 80
5.2.1. Optimization Condition 80
5.2.2. Proposed Load-Resistance Factors for AASHTO LRFD 83
5.2.3. Proposed Load-Resistance Factors for KHBDC-LSD 90

6. Summary and Conclusions 97

Reference 99

Appendix. Statistical Properties of Load-Resistance 103
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dc.formatapplication/pdf-
dc.format.extent2008733 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectLimit state design-
dc.subjectMinimum required strength-
dc.subjectInverse reliability analysis-
dc.subjectTarget reliability index-
dc.subjectLoad-Resistance factor-
dc.subjectOptimization-
dc.subject.ddc624-
dc.titleDetermination of the Load-Resistance Factors for Reliability-Based Codes by Optimization-
dc.title.alternative최적화 기법에 근거한 신뢰도기반 하중저항계수 결정-
dc.typeThesis-
dc.contributor.AlternativeAuthorBae Changhoon-
dc.description.degreeMaster-
dc.citation.pagesix, 109-
dc.contributor.affiliation공과대학 건설환경공학부-
dc.date.awarded2016-08-
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