Title of article :
OPTIMAL PERFORMANCE-BASED SEISMIC DESIGN OF COMPOSITE BUILDING FRAMES WITH RC COLUMNS and STEEL BEAMS
Author/Authors :
Fazli, H Department of Civil Engineering - Payame Noor University, Tehran
Abstract :
Composite RCS building frames integrate reinforced concrete columns with structural steel
beams to provide an efficient solution for the design and construction of earthquake-resisting
structures. In this paper, an optimization framework is developed for performance-based
seismic design of planar RCS moment resisting frames. The objective functions are defined
as minimizing the construction cost and the seismic damage. The design variables are
obtained in a two-stage design optimization procedure; the elastic design in which column
cross-section dimensions are determined and the inelastic design in which beam crosssections
and column reinforcements are obtained. Two design examples are presented to
demonstrate the applicability and efficiency of the proposed method. Based on the obtained
results, it is concluded that the proposed design optimization procedure is a viable approach
in producing cost effective seismic designs of composite RCS frames, with reliable seismic
performance and reduced damage potential in the event of a severe earthquake ground
motion.
Keywords :
optimization , performance-based design , seismic design , composite structure , RCS frame , colliding bodies optimization
Journal title :
Astroparticle Physics