Impact of Diaphragm Behavior on the Seismic Design of Low-Rise Steel Buildings

被引:0
|
作者
Rogers, Colin A. [1 ]
Tremblay, Robert [2 ]
机构
[1] McGill Univ, Dept Civil Engn & Appl Mech, Montreal, PQ H3A 2K6, Canada
[2] Ecole Polytech, Grp Res Struct Engn, Montreal, PQ H3C 3A7, Canada
基金
加拿大自然科学与工程研究理事会; 加拿大创新基金会;
关键词
diaphragms; seismic performance; low-rise steel buildings; ROOF DECK DIAPHRAGMS;
D O I
暂无
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Modern building codes allow engineers to use reduced seismic loads in design provided that the seismic load resisting system (SLRS) of the structure is adequately designed and detailed to withstand strong ground shaking through ductile inelastic response. This approach has been adopted by the North American model codes, which typically include special provisions to achieve satisfactory inelastic seismic performance. Single-story buildings often incorporate a steel roof deck diaphragm that is relied on to transfer lateral loads to the vertical bracing bents. The vertical braces are usually selected as the energy dissipating fuse element, while the diaphragm and other elements in the SLRS should be designed such that their capacity exceeds the nominal resistance of the braces. Steel bracing members designed for compression inherently possess significant reserve strength when loaded in tension, which means that large brace tension loads must be considered in the design of the surrounding protected structural components. Capacity design seismic provisions have led to the need for much thicker roof deck panels and more closely spaced diaphragm connection patterns compared with past practice in Canada. This paper describes the current U.S. seismic design approach and provides examples as it is applied to single-story buildings and their diaphragms. An overview of the related aspects of an ongoing research project on the flexibility and ductility of the roof diaphragm in low-rise steel buildings is also included.
引用
收藏
页码:21 / 36
页数:16
相关论文
共 50 条
  • [1] Impact of diaphragm behavior on the seismic design of low-rise steel buildings
    Rogers, Colin A.
    Tremblay, Robert
    Engineering Journal, 2010, 47 (01): : 21 - 36
  • [2] SEISMIC DESIGN OF LOW-RISE STEEL BUILDINGS
    MONTGOMERY, CJ
    HALL, WJ
    JOURNAL OF THE STRUCTURAL DIVISION-ASCE, 1979, 105 (10): : 1917 - 1933
  • [3] ASSESSMENT OF Q-FACTORS FOR SEISMIC DESIGN OF LOW-RISE STEEL BUILDINGS
    CALADO, L
    AZEVEDO, J
    LAMAS, A
    JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 1995, 35 (01) : 1 - 17
  • [4] Wind Resistant Design of Low-rise Steel Buildings
    Kang, Qiuyan
    Wu, Xishuang
    Li, Quanxi
    MECHANICAL ENGINEERING, MATERIALS SCIENCE AND CIVIL ENGINEERING II, 2014, 470 : 1003 - 1006
  • [5] Seismic upgrade design of a low-rise steel building
    NateghiA, F
    ENGINEERING STRUCTURES, 1997, 19 (11) : 954 - 963
  • [6] Seismic upgrade design of a low-rise steel building
    IIEES, PO Box 19395/3913, Tehran, Iran
    Eng Struct, 11 (954-963):
  • [7] Seismic design of low-rise steel buildings with flexible steel roof deck diaphragms - a Canadian perspective
    Tremblay, Robert
    Rogers, Colin A.
    STEEL CONSTRUCTION-DESIGN AND RESEARCH, 2011, 4 (04): : 242 - 250
  • [8] Experimental Study of New Seismic Protective Devices for Low-Rise Steel Buildings
    Kohan, Paul
    Wendichansky, Daniel
    Suarez, Luis E.
    JOURNAL OF EARTHQUAKE ENGINEERING, 2012, 16 (01) : 83 - 104
  • [9] Seismic retrofit of low-rise steel buildings in Canada using rocking steel braced frames
    Mottier, Paul
    Tremblay, Robert
    Rogers, Colin
    EARTHQUAKE ENGINEERING & STRUCTURAL DYNAMICS, 2018, 47 (02): : 333 - 355
  • [10] Development and experimental behavior of HDR seismic isolators for low-rise residential buildings
    Madera Sierra, Ingrid E.
    Losanno, Daniele
    Strano, Salvatore
    Marulanda, Johannio
    Thomson, Peter
    ENGINEERING STRUCTURES, 2019, 183 : 894 - 906