Types and layouts of bracing and their effects on lateral stiffness of steel-frame structures

被引:0
|
作者
Gao, Xuan-Neng [1 ]
Jiang, Yuan [1 ]
Peng, Guan-Shou [1 ]
Zhang, Hui-Hua [1 ]
机构
[1] College of Civil Engineering, Huaqiao University, Quanzhou, Fujian 362021, China
来源
Gongcheng Lixue/Engineering Mechanics | 2010年 / 27卷 / SUPPL. 1期
关键词
Stiffness - Structural frames - Steel construction - Seismology;
D O I
暂无
中图分类号
学科分类号
摘要
This paper researched the influence of bracing kinds on lateral stiffness of multi-storey and high-rise braced steel-frames through calculating the biggest sidesway of the top-storey of a steel-frame braced by different types and layouts of bracing. The results show that, for different kind of bracings, the lateral stiffness of a steel frame with bracing in central spans is higher than that in side spans or other spans; for the same layout of bracing, either centrically or eccentrically braced, the herringbone bracing is better than one-way diagonal bracing in lateral stiffness and economy of the braced steel-frames. The paper suggests that, for multi-storey and high-rise braced steel-frames, the herringbone bracing should be selected and be set on middle spans as possible. The paper also points out that the centrically herringbone bracing should be preferably employed in a small and middle seismic design intensity region but the eccentrically herringbone bracing should be firstly used in a macro-seismic design intensity region.
引用
收藏
页码:280 / 285
相关论文
共 50 条
  • [31] Noncomposite concrete deck bracing effects on continuous steel stringer lateral torsional buckling resistance
    Sun, C. Shawn
    Babarinde, Oluwatobi F.
    Kuruppuarachchi, Dinesha
    Linzell, Daniel G.
    Puckett, Jay A.
    Akintunde, Emmanuel
    ENGINEERING STRUCTURES, 2023, 283
  • [32] Equivalent calculation and accuracy analysis of lateral stiffness of frame with precast hybrid steel-concrete beams
    Zhang X.
    Zhao D.
    Meng X.
    Ba Z.
    Li X.
    Jianzhu Jiegou Xuebao/Journal of Building Structures, 2020, 41 : 204 - 209
  • [33] Lateral stiffness evaluation on corner-supported thin walled modular steel structures
    Liu, Yang
    Chen, Zhihua
    Liu, Jiadi
    Bai, Yu
    Zhong, Xu
    Wang, Xiaodun
    THIN-WALLED STRUCTURES, 2020, 157 (157)
  • [34] Enhancing and evaluating the seismic resilience of steel frame structures based on the stiffness-flexibility indicator
    Chen, Yinzhen
    Jia, Mingming
    Lu, Dagang
    SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2024, 179
  • [35] Effects of Joint Stiffness on Dynamic Characteristics of Steel Frame-composite Shear Wall
    Peng, Xiaotong
    Su, Dunlei
    Lin, Chen
    Zhou, Ye
    2016 INTERNATIONAL CONFERENCE ON ARCHITECTURE AND CIVIL ENGINEERING (ICACE 2016), 2016, : 452 - 456
  • [36] Effects of supporting-substructure lateral stiffness on the internal forces of grid structures
    Xue, Hao
    Wang, Hao
    Liu, Xiaogang
    JOURNAL OF CONSTRUCTIONAL STEEL RESEARCH, 2025, 224
  • [37] Lateral Bracing Effects on Slenderness, Stress Levels, and Lateral Displacements due to Wind and Seismic Events on a Steel Structure under Construction in Colombia
    Camila Carrascal-Jimenez, Maria
    Cifuentes-Tarquino, Geraldine
    Alejandro Nunez-Moreno, Federico
    JOURNAL OF PERFORMANCE OF CONSTRUCTED FACILITIES, 2017, 31 (05)
  • [38] Development of a long-period vertical base isolation device with variable stiffness for steel frame structures
    Dong, Wenqing
    Shi, Yundong
    Wang, Qi
    Wang, Yuchen
    Yan, Jia-Bao
    SOIL DYNAMICS AND EARTHQUAKE ENGINEERING, 2023, 164
  • [39] Effects of Vector Norm Types in Maximum Stiffness Problem of Simple Truss Structures
    Choong, Kook Keong
    Loh, Irene Wee Ling
    Kim, Jae-Yeol
    Kang, Joowon
    JOURNAL OF ASIAN ARCHITECTURE AND BUILDING ENGINEERING, 2009, 8 (02) : 485 - 492
  • [40] Initial lateral stiffness of plate-type modular steel frame structure with semi-rigid corner connections
    Zhai, Ximei
    Zha, Xiaoxiong
    Wang, Kaichao
    Wang, Haiyang
    STRUCTURES, 2023, 56