Title of article :
ASSESSMENT OF DUCTILITY REDUCTION FACTOR FOR OPTIMUM SEISMIC DESIGNED STEEL MOMENT-RESISTING FRAMES
Author/Authors :
Ganjavi, B Department of Civil Engineering - University of Mazandaran, Babolsar , Ghodrati Amiri, G School of Civil Engineering - Iran University of Science & Technology, Tehran
Abstract :
In the present study, ten steel-moment resisting frames (SMRFs) having different numbers
of stories ranging from 3 to 20 stories and fundamental periods of vibration ranging from 0.3
to 3.0 second were optimized subjected to a set of earthquake ground motions using the
concept of uniform damage distribution along the height of the structures. Based on the stepby-
step optimization algorithm developed for uniform damage distribution, ductilitydependent
strength reduction factor spectra were computed subjected to a given far-fault
earthquake ground motion. Then, the mean ductility reduction factors subjected to 20 strong
ground motions were computed and compared with those designed based on load pattern of
ASCE-7-16 (similar to standard No. 2800) code provision. Results obtained from parametric
studies indicate that, except in short-period structures, for moderate and high levels of
inelastic demand the structures designed based on optimum load pattern with uniform
damage distribution along the height require larger seismic design base shear strength when
compared to the frames designed based on the code provisions, which is more pronounced
for long-period structures i.e., the structural system becomes more flexible. This
phenomenon can be associated to the P-delta effect tending to increase the story drift ratios
of flexible structures, especially at the bottom stories. For practical purpose, a simplified
expression which is a function of fundamental period and ductility demand to estimate
ductility-dependent strength reduction factors of designed SMRFs according to code-based
lateral load pattern is proposed.
Keywords :
optimum design , generic frame , ductility reduction factor , uniform damage distribution , steel moment-resisting frame , practical equation
Journal title :
Astroparticle Physics