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Formulation of P-M Interaction Diagram by Applying Uniformly Distributed Reinforcement and Determination of RC Pylon Sections for Target Reliability : 등분포 철근 정식화를 적용한 PM 상관도 작성 및 목표신뢰도를 만족하는 RC 주탑 단면 결정

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dc.contributor.advisor이해성-
dc.contributor.author최윤승-
dc.date.accessioned2017-07-14T04:19:14Z-
dc.date.available2017-07-14T04:19:14Z-
dc.date.issued2016-08-
dc.identifier.other000000136827-
dc.identifier.urihttps://hdl.handle.net/10371/124336-
dc.description학위논문 (석사)-- 서울대학교 대학원 : 건설환경공학부, 2016. 8. 이해성.-
dc.description.abstractThis paper suggests a method to determine the optimum cross sections of RC pylons that satisfy the target reliability level. P-M interaction diagram is formulated based on uniformly distributed reinforced concrete to generalize the strength of RC column sections. Reliability analysis is conducted by HL-RF algorithm with gradient projection method. An optimum section that satisfies the target reliability level is determined for one of transverse and longitudinal direction or both of them. Object function is selected for reliability index requirement and the equation is solved by Newton-Raphson method with reinforcement equation or regularization function. The validity of method is demonstrated for two pylon section examples, Inchoen Bridge and Ulsan Bridge. When the reinforcement equation and regularization function are used for finding optimum sections, respectively, it is verified that the results are in agreement with each other under same reinforcement ratio condition. The fea-sibility of optimum section with general rebar is checked by placing the equivalent rebar in the cross section-
dc.description.tableofcontents1. Introduction 1

2. Reliability Assessment of RC pylon section. 2
2.1 Basic Theory of Reliability Assessment 2
2.2 AFOSM with gradient projection 6
2.3 Rackwitz-Fiessler transformation 10

3. Uniformly Distributed Reinforcement 12
3.1 Definition of Uniformly Distributed Reinforcement 12
3.2 PMID of Uniformly Distributed Reinforced Concrete Column 13
3.3 Reliability Assessment of RC pylon cross section 17
3.4 Comparison of Reliability Index for discrete and uniformly distributed reinforced RC column 25

4. Optimization of pylon section for Target Reliability. 28
4.1 General method 28
4.2 Determination of RC pylon Sections for Uniaxial Target reliability 30
4.3 Determination of RC pylon Sections for Biaxial Target reliability 33

5. Application and Verification 36
5.1 Incheon Bridge 37
5.1.1 Result of reliability analysis 40
5.1.2 Determination of pylon section for uniaxial target reliability 41
5.1.3 Determination of pylon section for biaxial target reliability 45
5.2 Ulsan Bridge 51
5.2.1 Result of reliability analysis 54
5.2.2 Determination of pylon section for uniaxial target reliability 56
5.2.3 Determination of pylon section for biaxial target reliability 59

6. Summary and Conclusion 64

Reference 66

국문 초록 68
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dc.formatapplication/pdf-
dc.format.extent942227 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectOptimum pylon section-
dc.subjectP-M interaction diagram-
dc.subjectReliability analysis-
dc.subjectTarget reliability index-
dc.subjectUniformly distributed reinforcement-
dc.subjectRegularization function.-
dc.subject.ddc624-
dc.titleFormulation of P-M Interaction Diagram by Applying Uniformly Distributed Reinforcement and Determination of RC Pylon Sections for Target Reliability-
dc.title.alternative등분포 철근 정식화를 적용한 PM 상관도 작성 및 목표신뢰도를 만족하는 RC 주탑 단면 결정-
dc.typeThesis-
dc.description.degreeMaster-
dc.citation.pages67-
dc.contributor.affiliation공과대학 건설환경공학부-
dc.date.awarded2016-08-
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