Multi-mode pushover procedure for deformation demand estimates of steel moment-resisting frames

被引:0
|
作者
Massimiliano Ferraioli
机构
[1] University of Campania “Luigi Vanvitelli”,Department of Civil Engineering, Design, Building and Environment
关键词
steel moment resisting frames; generalized force vectors; multi-mode pushover analysis;
D O I
暂无
中图分类号
学科分类号
摘要
The main objective of the paper is the development and evaluation of a multi-mode pushover procedure for the approximate analysis of the seismic response of steel moment-resisting frames. A generalized force vector derived from modal combination simulates the instantaneous force distribution acting on the structure when the interstorey drift reaches its maximum value during dynamic response to a seismic excitation. Considering the interstorey drift for each floor, a set of generalized force vectors (each associated to maximum drift at one story) is applied separately to the structure until the corresponding target interstorey drift is attained. The maximum value of each response parameter is obtained from the envelope of results. This multi-run and multi-mode pushover procedure allows a simple implementation, reducing the computational effort compared with adaptive nonlinear static procedures and with nonlinear response history analysis. Furthermore, it does not suffer from the statistical combination of inelastic modal responses calculated separately. Both effectiveness and accuracy are verified through a comparative study involving regular steel moment resisting frames subjected to various acceleration records. The results are finally compared with those obtained from other nonlinear static procedures and with the “exact” values from nonlinear response history analysis. It is demonstrated that the proposed procedure is able to accurately predict the seismic demands of steel moment-resisting frames. In low- and middle-rise frames, the error of interstorey drift ratios of the proposed procedure is in the range 5.8-20.8% when the intensity level of the input ground motion varies in the range 0.2-0.8 g. In high-rise frames the error of interstorey drift ratios is in the range 6.38-20.9%.
引用
收藏
页码:653 / 676
页数:23
相关论文
共 50 条
  • [31] The seismic behaviour of steel moment-resisting frames with stiffening braces
    Martinelli, L
    Mulas, MG
    Perotti, F
    ENGINEERING STRUCTURES, 1998, 20 (12) : 1045 - 1062
  • [32] The seismic response of concentrically braced moment-resisting steel frames
    Dept of Structural Eng, Politecnico di Milano, Piazza Leonardo da Vinci 32, Milano 20133, Italy
    Earthquake Eng Struct Dyn, 11 (1275-1299):
  • [33] Strength demand issues relevant for the seismic design of moment-resisting frames
    Medina, RA
    Krawinkler, H
    EARTHQUAKE SPECTRA, 2005, 21 (02) : 415 - 439
  • [34] Blast Demand Estimation of RC-moment-resisting Frames using a Proposed Multi-modal Adaptive Pushover Analysis Procedure
    Kiran, K. K.
    Farsangi, E. Noroozinejad
    INTERNATIONAL JOURNAL OF ENGINEERING, 2021, 34 (01): : 46 - 55
  • [35] Blast demand estimation of rc-moment-resisting frames using a proposed multi-modal adaptive pushover analysis procedure
    Kiran K.K.
    Noroozinejad Farsangi E.
    Noroozinejad Farsangi, E. (noroozinejad@kgut.ac.ir), 1600, Materials and Energy Research Center (34): : 46 - 55
  • [36] Pushover analysis for estimating seismic demand of elliptic braced moment resisting frames
    Jouneghani, Habib Ghasemi
    Haghollahi, Abbas
    Mortazavi, Mina
    GRADEVINAR, 2022, 74 (11): : 941 - 955
  • [37] SEISMIC BEHAVIOR OF MOMENT-RESISTING STEEL FRAMES - EXPERIMENTAL-STUDY
    SCHNEIDER, SP
    ROEDER, CW
    CARPENTER, JE
    JOURNAL OF STRUCTURAL ENGINEERING-ASCE, 1993, 119 (06): : 1885 - 1902
  • [38] Modeling of the lateral stiffness of masonry infilled steel moment-resisting frames
    Lemonis, Minas E.
    Asteris, Panagiotis G.
    Zitouniatis, Dimitrios G.
    Ntasis, Georgios D.
    STRUCTURAL ENGINEERING AND MECHANICS, 2019, 70 (04) : 421 - 429
  • [39] A simple approach for evaluating performance levels of moment-resisting steel frames
    Mazzolani, FM
    Piluso, V
    SEISMIC DESIGN METHODOLOGIES FOR THE NEXT GENERATION OF CODES, 1997, : 241 - 252
  • [40] Pushover Analysis of Reinforced Concrete Moment-Resisting Frames to Account for the Variations of Axial Forces on the Moment Curvature Properties
    Samadi, N.
    Aghayari, R.
    Izadpanah, M.
    CIVIL ENGINEERING INFRASTRUCTURES JOURNAL-CEIJ, 2024, 57 (01): : 157 - 173