A new methodology for energy-based seismic design of steel moment frames

被引:1
|
作者
Mebrahtom Gebrekirstos Mezgebo [1 ]
Eric M.Lui [2 ]
机构
[1] Michael Baker International
[2] Department of Civil and Environmental Engineering,Syracuse University
关键词
energy-based seismic design; hysteretic energy distribution; MDOF systems; steel moment frames; story-wise optimization design;
D O I
暂无
中图分类号
TU391 [钢结构]; TU352.11 [];
学科分类号
081304 ; 081402 ; 081405 ;
摘要
A procedure is proposed whereby input and hysteretic energy spectra developed for single-degree-of-freedom(SDOF) systems are applied to multi-degree-of-freedom(MDOF) steel moment resisting frames.The proposed procedure is verified using four frames, viz., frame with three-, five-, seven-and nine-stories, each of which is subjected to the faultnormal and fault-parallel components of three actual earthquakes.A very good estimate for the three-and five-story frames, and a reasonably acceptable estimate for the seven-, and nine-story frames, have been obtained.A method for distributing the hysteretic energy over the frame height is also proposed.This distribution scheme allows for the determination of the energy demand component of a proposed energy-based seismic design(EBSD) procedure for each story.To address the capacity component of EBSD, a story-wise optimization design procedure is developed by utilizing the energy dissipating capacity from plastic hinge formation/rotation for these moment frames.The proposed EBSD procedure is demonstrated in the design of a three-story one-bay steel moment frame.
引用
收藏
页码:131 / 152
页数:22
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