가상축력을 이용한 좌굴해석 및 HSB800 강재를 적용한 사장교에 대한 적용성 분석

Buckling Analysis using Fictitious Axial Forces and Its Application to Cable-Stayed Bridges with HSB800 Steel

초록

System buckling analysis is usually used to determine the critical buckling load in the buckling design of cable-stayed bridges. However, system buckling analysis may yield unexpectedly large effective lengths of the members subjected to a relatively small axial force. This paper proposes a new method to determine reasonable effective lengths of girder and tower members in steel cable-stayed bridges using fictitious axial forces. An improved inelastic buckling analysis with modified tangent modulus is also presented. The effective lengths of members in example bridges calculated using the proposed method are compared with those obtained using the conventional buckling analysis method. The proposed method provides much more resonable effective lengths of the members. When girder and tower members are built with HSB800 steel instead of conventional steel, the effective lengths of the members under a small axial force slightly decreases in the inelastic buckling analysis without fictitious axial forces, while the proposed method that considers fictitious axial forces provides almost no changes in such lengths.

키워드

탄성 좌굴해석비탄성 좌굴해석유효좌굴길이가상축력강사장교HSB800 강재Elastic buckling analysisInelastic buckling analysisEffective lengthFictitious axial forceSteel cable-stayed bridgeHSB800 steel
제목
가상축력을 이용한 좌굴해석 및 HSB800 강재를 적용한 사장교에 대한 적용성 분석
제목 (타언어)
Buckling Analysis using Fictitious Axial Forces and Its Application to Cable-Stayed Bridges with HSB800 Steel
저자
Choi, Dong HoYoo, HoonGwon, Sun GilLim, Ji Hoon
DOI
10.7781/kjoss.2017.29.1.013
발행일
2017-02
저널명
한국강구조학회 논문집
29
1
페이지
13 ~ 24