Transverse Seismic Pounding Effect and Pounding Reduction of Simply-Supported Girder Bridge for High-Speed Railway

被引:0
|
作者
Yang M. [1 ]
Meng D. [1 ]
Wei K. [1 ]
Qiao J. [1 ]
机构
[1] School of Civil Engineering, Central South University, Changsha
来源
Qiao, Jiandong (jdqiao@csu.edu.cn) | 1600年 / Science Press卷 / 55期
关键词
Earthquake; Pounding; Rail system; Seismic isolation devices; Shear keys; Simply-supported girder bridge for high-speed railway;
D O I
10.3969/j.issn.0258-2724.20180277
中图分类号
学科分类号
摘要
A 32 m standard-span simply-supported girder bridge with 7 spans for high-speed railway was used as a prototype to study the effects of the earthquake-induced transverse pounding, as well as the pounding reduction effects of various isolation devices. The actual force-deformation curves of shear keys were determined experimentally and a finite element model considering pounding was established using SAP2000. On this basis, influences of the rail system, the initial gap between the shear keys and bearing padstones, and the thickness of shear-key plates on seismic responses of the bridge were analyzed. Then, the pounding reduction effects of rubber bumpers, lead rubber bearings (LRBs), friction pendulum bearings (FPBs), high damping rubber bearings (HDRs), and fluid viscous dampers were discussed. The results are as follows: the rail system can significantly alter the distribution of seismic forces between bridge spans. Under excitations of the maximum earthquakes considered, the nonlinear effect of shear keys is significant, with the maximum pounding force of 2.18 MN. For the sample bridge presented in this paper, it is a reasonable configuration to set the initial gap between the pounding members as 3 cm and the thickness of shear-key plates as 32 mm. The seismic isolation devices can improve the seismic performance of the bridge; their pounding reduction effects are affected by spectral characteristics of ground motions as well as their own mechanisms. Among them, the FPB has better applicability and the seismic forces between different spans become more uniform after the installation of FPBs. © 2020, Editorial Department of Journal of Southwest Jiaotong University. All right reserved.
引用
收藏
页码:100 / 108
页数:8
相关论文
共 50 条
  • [31] Simplified linear analysis model of longitudinal constraint effect of high-speed railway simply-supported bridge under frequent earthquake
    Lizhong Jiang
    Bufan Zhong
    Wangbao Zhou
    Yuntai Zhang
    Jian Yu
    Yinting Zhao
    [J]. Bulletin of Earthquake Engineering, 2024, 22 : 1827 - 1853
  • [32] Simplified linear analysis model of longitudinal constraint effect of high-speed railway simply-supported bridge under frequent earthquake
    Jiang, Lizhong
    Zhong, Bufan
    Zhou, Wangbao
    Zhang, Yuntai
    Yu, Jian
    Zhao, Yinting
    [J]. BULLETIN OF EARTHQUAKE ENGINEERING, 2024, 22 (04) : 1827 - 1853
  • [33] Running safety and seismic optimization of a fault-crossing simply-supported girder bridge for high-speed railways based on a train-track-bridge coupling system
    Jiang Hui
    Zeng Cong
    Peng Qiang
    Li Xin
    Ma Xin-yi
    Song Guang-song
    [J]. JOURNAL OF CENTRAL SOUTH UNIVERSITY, 2022, 29 (08) : 2449 - 2466
  • [34] The resonant vibration for a simply supported girder bridge under high-speed trains
    Li, JZ
    Su, MB
    [J]. JOURNAL OF SOUND AND VIBRATION, 1999, 224 (05) : 897 - 915
  • [35] Analysis of the Seismic Vulnerability of Simply-supported Girder Bridge under Two Level Seismic Hazard
    Li, Xiang
    Zhong, Jian
    Jiang, Linwei
    Yuan, Wancheng
    [J]. 2018 3RD INTERNATIONAL CONFERENCE ON SMART CITY AND SYSTEMS ENGINEERING (ICSCSE), 2018, : 173 - 177
  • [36] Shaking table test of the seismic performance for railway simply-supported girder bridge isolated by self-centering bearing
    Wei, Biao
    Tan, Hao
    Jiang, Lizhong
    Xiao, Binqi
    Lu, Andong
    [J]. ENGINEERING STRUCTURES, 2024, 300
  • [37] Research on the Seismic Performance of Simply Supported Beam Bridge of Near-fault High-speed Railway
    近断层高铁简支梁桥抗震性能分析研究
    [J]. Zeng, Yongping, 1600, Editorial Department of Journal of Railway Engineering Society (37): : 70 - 76
  • [38] Shaking table test of seismic performance of a simply-supported girder bridge with single column
    Shao C.
    Qi Q.
    Wei W.
    Hu C.
    Wang M.
    Xiao L.
    Xiao Z.
    [J]. Zhendong yu Chongji/Journal of Vibration and Shock, 2019, 38 (16): : 49 - 55
  • [39] Pounding behavior of high-speed railway simple supported bridges under the near-fault earthquakes
    Meng, Xian-Feng
    Zhu, Xi
    [J]. Beijing Jiaotong Daxue Xuebao/Journal of Beijing Jiaotong University, 2006, 30 (04): : 73 - 76
  • [40] Study on running safety indexes for high speed railway simply-supported bridge under earthquake
    Xiang, Liu
    Lizhong, Jiang
    Ping, Xiang
    Zhipeng, Lai
    [J]. Tumu Gongcheng Xuebao/China Civil Engineering Journal, 2022, 55 (07): : 66 - 76