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1면 케이블 콘크리트 사장교의 유효플랜지폭 결정에 관한 연구

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Alternative Title
Determination of the Effective Flange Width of Single-Plane-Cable-Stayed Concrete Bridges
Abstract
Bending and axial compressive stresses are distributed across the whole upper flange of a box girder bridge which has the span-to-depth ratio (B/L) of below 0.5, according to Korea Bridge Design Specifications (Minister of Land, Transport and Maritime Affairs, 2005). Shear lag phenomenon, however, can take place in the construction phase of cable-stayed bridge, in which stresses combining bending moment due to dead weight and cable vertical compression are induced. This study aims to analyze the effective width of flange over which composite stresses are given, which should be calculated during the construction phase of stiffening girder of single plane cable-stayed box girder bridge. The study results indicate that the full width of stiffening girder can be regarded as the effective flange width when the span-to-depth ratio for the deck is below 0.38. In other words, the area, where shear lag is taken into consideration, is larger than the width of box girder in single plane cable-stayed box girder bridges. Therefore, the current practice of considering the full width as the effective flange width regardless of changes of the span-to-depth ratio during the construction stage can produce an unsafe bridge. Since the span-to-depth ratio gradually decreases, however, it is appropriate to determine the effective width of flange on the basis of the full width and the cantilever structural system.
Author(s)
강호준
Issued Date
2010
Awarded Date
2010. 8
Type
Dissertation
Keyword
Calbe-stayed concrete bridge single plane cable effctive flage width construction stage
Publisher
부경대학교
URI
https://repository.pknu.ac.kr:8443/handle/2021.oak/10278
http://pknu.dcollection.net/jsp/common/DcLoOrgPer.jsp?sItemId=000001956047
Alternative Author(s)
Kang, Ho Jun
Affiliation
부경대학교
Department
대학원 토목공학과
Advisor
이환우
Table Of Contents
1. 서 론 1
1.1 연구배경 및 목적 1
1.2 연구동향 3
1.3 연구방법 및 범위 3

2. 사장교 구성별 구조특성 4
2.1 사장교 개요 4
2.2 사장교 현황 5
2.3 사장교 설계 7
2.3.1 경간분할 8
2.3.2 케이블 10
2.3.3 주탑 11
2.3.4 주형 11
2.4 사장교 시공 13
2.4.1 주탑 13
2.4.2 케이블 14
2.4.3 주형 14

3. 시공단계시 보강형의 전단지연 현상 16
3.1 콘크리트 박스거더의 전단지연 현상 17
3.2 박스거더에 적용되는 유효플랜지폭 18
3.2.1 도로교 설계기준(2005)의 유효플랜지폭 19
3.2.2 Regularization Length에 의한 유효플랜지폭 23

4. 수치 해석 25
4.1 대상 교량 25
4.1.1 개요 25
4.1.2 해석 교량의 제원 28
4.1.3 해석 부재의 모델링 29
4.1.4 해석 범위 31
4.1.5 시공단계 해석 33
4.1.6 시공단계의 정의 35
4.2 해석결과 42
4.2.1 휨에 대한 검토 42
4.2.2 선단부의 수직력(축력)에 대한 검토 48
4.2.3 박스단면 강성별 분산각(A°) 수정계수 55

5. 결 론 58

참고문헌 60
Degree
Master
Appears in Collections:
산업대학원 > 토목공학과
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