TECHNICAL PAPERS
May 17, 2011

Prediction of Column Axial Forces in Inverted V-braced Seismic Steel Frames Considering Brace Buckling

Publication: Journal of Structural Engineering
Volume 137, Issue 12

Abstract

Brace buckling in inverted-V-braced frames induces the vertical unbalanced force. The columns in the braced bay should be designed, per the capacity design concept, to remain elastic for gravity load actions and additional column axial forces that result from the brace buckling. However, owing to the difficulty in accumulating the buckling-induced column forces from different stories, empirical and often conservative approaches have been used in design practice. In this paper, three combination rules for a rational estimation of the column axial forces are proposed. The idea central to the three methods is to detect the stories with high buckling potential as precisely as possible by using pushover analysis and/or simple demand-to-capacity analysis. The vertical unbalanced forces in the stories detected as high buckling potential are then summed in a linear manner, whereas those otherwise are combined by following the SRSS (square root of sum of squares) rule. The accuracy and design advantage of the three methods is evaluated on the basis of extensive inelastic dynamic analyses. The mode shape-based method (MSBM), which is both simple and accurate, is recommended as the method of choice for practicing engineers among the three proposed.

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References

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Published In

Go to Journal of Structural Engineering
Journal of Structural Engineering
Volume 137Issue 12December 2011
Pages: 1440 - 1450

History

Received: May 18, 2010
Accepted: Jan 3, 2011
Published online: May 17, 2011
Published in print: Dec 1, 2011

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Authors

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ChunHee Cho [email protected]
Graduate student, Dept. of Civil & Environmental Engineering, Georgia Institute of Technology, Atlanta, GA 30332. E-mail: [email protected]
Cheol-Ho Lee, M.ASCE [email protected]
Professor, Dept. of Architecture & Architectural Engineering, Seoul National Univ., Seoul 151-742, Korea (corresponding author). E-mail: [email protected]
Jeong-Jae Kim [email protected]
Graduate Student, Dept. of Architecture & Architectural Engineering, Seoul National Univ., Seoul 151-742, Korea. E-mail: [email protected]

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