首页> 外文会议>International conference on earthquake engineering-anniversary of Wenchuan earthquake >Effect of Lateral Brace Stiffness of A Large-Span Steel Arch Bridge on Response of the Whole Bridge
【24h】

Effect of Lateral Brace Stiffness of A Large-Span Steel Arch Bridge on Response of the Whole Bridge

机译:大跨度钢拱桥横向支架刚度对整个桥梁响应的影响

获取原文

摘要

With the development of the technology of bridges building in our country, some new modeling and complex structures of large-span steel arch bridges have appeared. Earthquake happens frequently in china, so it is of significance to ensure safe operation of these bridges under seismic loading. Taking Fenghua Bridge in Tianjin, which is a novel and complex three-dimensional surface steel arch bridge, as the research object, the self-vibration characteristics are studied under Tianjin wave. At the same time the law of internal force and displacements of arch rib are discussed under consistent three-dimensionality excitation and traveling wave effect respectively. Furthermore, the effect of change of lateral brace stiffness on seismic response of the whole bridge is studied under consistent three-dimensionality excitation. Some conclusions which could provide some references for the further theoretical study and design of this new type bridge are obtained. Vaults of large-span steel arch bridges have much less sensitive degree to the internal force than arch foots, while bridges with smaller lateral brace stiffness have more internal force than the bigger ones under the same seismic loading. What is more, lateral brace shows significant influence on transverse moment and bigger lateral brace stiffness is adverse to the transverse moment of arch rib.
机译:随着我国桥梁建设技术的发展,出现了大跨度钢拱桥的一些新的建模和复杂结构。地震经常在中国发生,因此确保在地震荷载下的这些桥梁安全运行是重要的。采用天津市奉化大桥,这是一种新颖而复杂的三维表面钢拱桥,作为研究对象,在天津波下研究了自振特性。同时,分别在一致的三维激励和行波效果下讨论了拱肋内部力和位移规律。此外,在一致的三维激发下研究了横向支撑刚度变化对整个桥梁地震反应的影响。可以获得一些可结论,可以提供对进一步理论研究和设计这种新型桥梁的一些参考。大跨度钢拱桥的拱顶对内部力的敏感程度远远不如拱脚脚,而具有较小横向支撑刚度的桥梁比相同地震载荷的较大的桥梁具有更多的内部力。更重要的是,横向支架显示对横向时刻的显着影响,并且更大的横向支撑刚度与拱形肋的横向时刻不佳。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号