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Equivalent Seismic Performance Optimization of Steel Structures Based on Nonlinear Damage Analysis
An equivalent seismic performance optimization (ESPO) method is proposed in this article based on nonlinear seismic damage analysis, where the constraints and the fitness function of the optimization problem are expressed as the seismic performance index combined with the importance coefficient and the damage index. Two prototype buildings, a 9-story building with steel frame and a 15-story building with steel frame plus steel plate shear wall are optimized using the ESPO method, and the building seismic performance is obtained through incremental dynamic analysis. The analysis results show that the global seismic performance of the optimized building has obviously improved while the building self-weight has been reduced significantly.
Equivalent Seismic Performance Optimization of Steel Structures Based on Nonlinear Damage Analysis
An equivalent seismic performance optimization (ESPO) method is proposed in this article based on nonlinear seismic damage analysis, where the constraints and the fitness function of the optimization problem are expressed as the seismic performance index combined with the importance coefficient and the damage index. Two prototype buildings, a 9-story building with steel frame and a 15-story building with steel frame plus steel plate shear wall are optimized using the ESPO method, and the building seismic performance is obtained through incremental dynamic analysis. The analysis results show that the global seismic performance of the optimized building has obviously improved while the building self-weight has been reduced significantly.
Equivalent Seismic Performance Optimization of Steel Structures Based on Nonlinear Damage Analysis
Lv, Yang (Autor:in) / Li, Zhong-Xian (Autor:in) / Xu, Long-He (Autor:in) / Ding, Yang (Autor:in)
Advances in Structural Engineering ; 18 ; 941-958
01.07.2015
18 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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