Joints and wood shear walls modelling II: Experimental tests and FE models under seismic loading

被引:20
|
作者
Boudaud, C. [1 ]
Humbert, J. [2 ]
Baroth, J. [3 ]
Hameury, S. [4 ]
Daudeville, L. [3 ]
机构
[1] LUNAM Univ, Grp Ecole Super Bois, Nantes, France
[2] Korea Forest Res Inst, Seoul, South Korea
[3] UJF Grenoble 1, CNRS UMR 5521, Grenoble INP, 3SRLab, F-38041 Grenoble, France
[4] Ctr Sci & Tech Batiment, Marne La Vallee, France
关键词
Timber-framed structures; Shear walls; Finite element method; Seismic tests; PREDICTION; BEHAVIOR; OPENINGS;
D O I
10.1016/j.engstruct.2014.10.053
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
This study presents a finite element (FE) model of timber-framed shear walls under seismic loading, which has been validated in Part I under quasi-static loading. In this paper, experimental shake table tests on shear walls are described and some examples of the obtained results are discussed. Then, the refined FE model predictions under dynamic loading are compared to the 11 shake table tests. The final objective of this study is to create a 3D model of timber-framed structures; thus, a simplified FE model is proposed to reproduce the refined FE model predictions at a reasonable computational cost. The calibration method of the simplified model uses the predictions of the refined FE model under quasi-static loading as input. The simplified model is then used for dynamic calculations and its predictions are confronted to the refined FE model ones, in order to validate its behaviour under dynamic loading. Eventually, an efficient method to build the walls of a timber-framed building by coupling simplified FE models is proposed. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:743 / 749
页数:7
相关论文
共 50 条
  • [31] Experimental study of composite T-joints under tensile and shear loading
    Stickler, P. B.
    Ramulu, A.
    ADVANCED COMPOSITE MATERIALS, 2006, 15 (02) : 193 - 210
  • [32] Lateral behavior of wood frame shear walls sheathed with densified plywood under monotonic loading
    Yue, Kong
    Liang, Bing
    Shao, Yaling
    Xie, Conghui
    Hu, Wenjie
    Zhao, Mingyuan
    Chen, Zhangjing
    Lu, Weidong
    THIN-WALLED STRUCTURES, 2021, 166 (166)
  • [33] Evaluation of the seismic performance of novel bundled connections precast shear walls under cyclic loading
    Feng, Jian
    Yu, Zihao
    Liu, Guang
    Fan, Xiao
    Zhang, Qian
    Cai, Jianguo
    STRUCTURAL CONCRETE, 2024, 25 (03) : 1953 - 1967
  • [34] Prediction of seismic behavior of wood-framed shear walls with openings by pseudodynamic test and FE model
    N. Richard
    M. Yasumura
    L. Davenne
    Journal of Wood Science, 2003, 49 : 145 - 151
  • [35] Prediction of seismic behavior of wood-framed shear walls with openings by pseudodynamic test and FE model
    Richard, N
    Yasumura, M
    Davenne, L
    JOURNAL OF WOOD SCIENCE, 2003, 49 (02) : 145 - 151
  • [36] Investigation on the Structural Behavior of Shear Walls with Steel Truss Coupling Beams under Seismic Loading
    Deng, Zhiheng
    Xu, Changchun
    Hu, Qiang
    Zeng, Jian
    Xiang, Ping
    ADVANCES IN MATERIALS SCIENCE AND ENGINEERING, 2018, 2018
  • [37] Experimental Study on Low Cyclic Loading Tests of Steel Plate Shear Walls with Multilayer Slits
    Jinyu Lu
    Shunji Yu
    Xudong Qiao
    Na Li
    International Journal of Steel Structures, 2018, 18 : 1210 - 1218
  • [38] Experimental Study on Low Cyclic Loading Tests of Steel Plate Shear Walls with Multilayer Slits
    Lu, Jinyu
    Yu, Shunji
    Qiao, Xudong
    Li, Na
    INTERNATIONAL JOURNAL OF STEEL STRUCTURES, 2018, 18 (04) : 1210 - 1218
  • [39] Numerical modelling of wood under combined loading of compression perpendicular to the grain and rolling shear
    Akter, Shaheda T.
    Serrano, Erik
    Bader, Thomas K.
    ENGINEERING STRUCTURES, 2021, 244
  • [40] Experimental and analytical investigations on new viscoelastic damped joints for seismic mitigation of structures with precast shear walls
    Zhang, Caiyan
    Li, Hongnan
    Gao, Weihang
    Li, Chao
    STRUCTURAL CONTROL & HEALTH MONITORING, 2020, 27 (02):