期刊文献+

Scaled down model design of shaking table test of Taizhou Bridge 被引量:1

Scaled down model design of shaking table test of Taizhou Bridge
在线阅读 下载PDF
导出
摘要 Taizhou Bridge is the first kilometer level three-pylon two-span suspension bridge in the world and the structural complexity has significant effects on the seismic performance of the bridge. Shaking table test of Taizhou Bridge is arranged to investigate the effects of non-uniform ground motion input, collision between main and side spans and optimal seismic structural system. It's very important and difficult to design and manufacture the scaled down model of Taizhou Bridge used during the shaking table test. The key point is that the girder and pylons are very hard to be manufactured if the similarity ratio is strictly followed. Based on the finite element method (FEM) analysis, a simplified scaled down model is designed and the bending stiffness of the girder and pylon are strictly simulated, and the torsion stiffness and axial stiffness are not strictly simulated. The inner forces and displacements of critical sections, points of simplified model and theoretical model are compared by FEM analysis, and it's found out that the difference between the seismic responses is relatively small. So, the simplified model can be used to conduct the shaking table test by the FEM verification.
出处 《Engineering Sciences》 EI 2012年第3期33-37,共5页 中国工程科学(英文版)
基金 National Science and Technology Support Program of China(No.2009BAG15B01) Key Programs for Science and Technology Development of Chinese Transportation Industry(No.2008-353-332-190) Natural Science Foundation of China(No.50708074) the Ministry of Science and Technology of China(No.SLDRCE08-B-04) Kwang-Hua Fund for College of Civil Engineering,Tongji University
关键词 three-pylon two-span suspension bridge shaking table test stiffness equivalence simplified scaled down model FEM verification 振动台试验 模型设计 地震动输入 大桥 有限元分析 抗震结构体系 结构复杂性 按比例缩小
  • 相关文献

参考文献3

二级参考文献18

  • 1赵斌,卢文胜,吕西林,张晖,顾嗣醇.超高层剪力墙(短肢剪力墙)-筒体结构整体模型振动台试验研究[J].建筑结构学报,2004,25(3):14-21. 被引量:18
  • 2陈常松,颜东煌,田仲初,李学文.岳阳洞庭湖大桥模型动力相似理论分析[J].桥梁建设,2002,32(1):48-51. 被引量:27
  • 3张春雨,唐光武,郑罡.重庆菜园坝长江大桥模型动力相似理论分析[J].公路交通技术,2006,22(4):89-92. 被引量:6
  • 4R W Clough. Dynamics of structures[Z]. Computers & Structures, Inc, 1995.
  • 5Wai-Fah Chen. Bridge Engineering Handbook[M]. CRC Press, 2000.
  • 6中铁大桥勘测设计院.新建铁路宜万线万州长江特大桥主桥动力特性和抗震性能试验研究的技术要求[R].武汉:中铁大桥勘测设计院,2003..
  • 7李德寅 王邦楣.结构模型试验[M].北京:科学出版社,1996..
  • 8陈蜀俊 王清云.新建铁路宜万线万州长江特大桥工程场地地震安全性评价报告[R].武汉:中国地震局地震研究所,2002..
  • 9清华大学抗震抗爆工程研究室.结构模型的振动台试验研究.科学研究报告集第五集,清华大学出版社,1990
  • 10混凝土结构设计规范 (GB50010-2001).中华人民共和国国家标准,2002

共引文献47

同被引文献12

  • 1胡世德,范立础.江阴长江公路大桥纵向地震反应分析[J].同济大学学报(自然科学版),1994,22(4):433-438. 被引量:46
  • 2Bogdanoff, J.L., J.E.Goldberg, A.J.Schiff.The Effect of Ground Transmission Time on the Response of Long Structures.[J]Bulletin of the Seismological Society of America.1965, 55(3): 627-640.
  • 3Dumanoglu A A, Severn R T.Seismic Response of Modern Suspension Bridges to Asynchronous Vertical Ground Motion [C]//ICE Proceedings.Thomas Telford, 1987, 83(4): 701-730.
  • 4Dumanoglu, A.A.,R.T.Severn.Seismic Response of Modern Suspension Bridges to Asynchronous Longitudinal and Lateral Ground Motion [C]//ICE Proceedings.Thomas Telford, 1989, 87(1): 73-86.
  • 5Dumanoglu, A.A., J.M.W.Brownjohn, R.T.Severn.Seismic Analysis of the Fatih Sultan Mehmet (second Bosporus) Suspension Bridge.[J] Earthquake Engineering & Structural Dynamics 1992,21(10): 881-906.
  • 6Abdel-Ghaffar, A.M.and R.G.Stringfellow.Response of Suspension Bridges to Travelling Earthquake Excitations: Part I.Vertical Response.[J] International Journal of Soil Dynamics and Earthquake Engineering 1984,3(3): 62-72.
  • 7Abdel-Ghaffar, A.M.and R.G.Stringfellow.Response of Suspension Bridges to Travelling Earthquake Excitations: Part I.Lateral Response.[J] International Journal of Soil Dynamics and Earthquake Engineering 1984,3(3): 73-81.
  • 8Saiidi M S, Nelson R, Sadrossadat-Zadeh M and Buckle.Shake table studies of a 4-span reinforced concrete bridge model.Proceedings 2007 ANCER Meeting, Earthquake Engineering Research: From Strong Seismic Regions to Regions of Moderate Seismicity, HK, China.
  • 9Yang CY.Seismic analysis of long span bridges including the effects of spatial variation of seismic waves on bridges.Ph.D.thesis.2007.Department of Civil Engineering, Hong Kong University of Science and Technology.
  • 10Li, J., Yan, J.,and Peng, T,et al.Shake Table Studies of Seismic Structural Systems of a Taizhou Changjiang Highway Bridge Model.J.Bridge Eng., 2015.20(3), 04014065.

引证文献1

二级引证文献14

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部