Peak displacement patterns for the performance-based seismic design of steel eccentrically braced frames

被引:0
作者
Ali Fakhraddini
Hamed Saffari
Mohammad Javad Fadaee
机构
[1] DepartmentofCivilEngineering,ShahidBahonarUniversityofKerman
关键词
performance-based seismic design; direct displacement-based design; displacement pattern; eccentrically braced frames; steel building;
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
Performance-based seismic design(PBSD) aims to assess structures at different damage states. Since damage can be directly associated to displacements, seismic design with consideration of displacement seems to be logical. In this study, simple formulae to estimate the peak floor displacement patterns of eccentrically braced frames(EBFs) at different performance levels subjected to earthquake ground motions are proposed. These formulae are applicable in a PBSD and especially in direct displacement-based design(DDBD). Parametric study is conducted on a group of 30 EBFs under a set of 15 far field and near field accelerograms which they scaled to different amplitudes to adapt various performance levels. The results of thousands of nonlinear dynamic analyses of EBFs have been post-processed by nonlinear regression analysis in order to recognize the major parameters that influence the peak displacement pattern of these frames. Results show that suggested displacement patterns have relatively good agreement with those acquired by an exact nonlinear dynamic analysis.
引用
收藏
页码:379 / 393
页数:15
相关论文
共 20 条
[1]  
Direct use of peak ground motion parameters for the estimation of inelastic displacement ratio of SDOF systems subjected to repeated far fault ground motions[J]. Cengizhan Durucan,Muhammed Gümü?.Earthquake Engineering and Engineering Vibration. 2018(04)
[2]  
Finite element modeling assumptions impact on seismic response demands of MRF-buildings[J]. Shehata E Abdel Raheem,Ahmed K Abdel Zaher,Ahmed MA Taha.Earthquake Engineering and Engineering Vibration. 2018(04)
[3]  
Derivation of energy-based base shear force coefficient considering hysteretic behavior and P-delta effects[J]. Taner Ucar,Onur Merter.Earthquake Engineering and Engineering Vibration. 2018(01)
[4]  
A new methodology for energy-based seismic design of steel moment frames[J]. Mebrahtom Gebrekirstos Mezgebo,Eric M.Lui.Earthquake Engineering and Engineering Vibration. 2017(01)
[5]  
A modal shear-based pushover procedure for estimating the seismic demands of tall building structures[J] . Mohammad Hossein Vafaee,Hamed Saffari.Soil Dynamics and Earthquake Engineering . 2017
[6]  
Modelling of steel link beams of short, intermediate or long length[J] . Melina Bosco,Edoardo M. Marino,Pier Paolo Rossi.Engineering Structures . 2015
[7]   Displacement amplification factors for steel eccentrically braced frames [J].
Kusyilmaz, Ahmet ;
Topkaya, Cem .
EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2015, 44 (02) :167-184
[8]  
Performance-based seismic design of nonstructural building components: The next frontier of earthquake engineering[J] . Andre Filiatrault,Timothy Sullivan.Earthquake Engineering and Engineering Vibration . 2014 (1)
[10]   Design overstrength of steel eccentrically braced frames [J].
Kusyilmaz, Ahmet ;
Topkaya, Cem .
INTERNATIONAL JOURNAL OF STEEL STRUCTURES, 2013, 13 (03) :529-545