期刊文献+

附加黏弹性阻尼与金属阻尼耗能的自复位墙结构抗震性能对比分析 被引量:6

Comparative analysis on seismic performances of self-centering wall structures with viscoelastic and metal dampers
在线阅读 下载PDF
导出
摘要 相对传统结构,自复位墙结构在地震作用下具有更大的变形能力且几乎无残余位移,但其耗能能力较弱,需采用附加阻尼来增加整体耗能。目前,金属阻尼器已广泛用于自复位墙结构,其可显著减小结构大震下的地震响应,但小震下的位移和加速度减震效果不佳。因此,将小变形下即可耗能的黏弹性阻尼器应用于自复位墙结构中。设计一幢10层自复位墙结构,分别采用黏弹性阻尼器和U型金属阻尼器作为附加耗能构件,通过弹塑性时程分析对比采用两种耗能机制的结构地震响应。结果表明,黏弹性阻尼器可显著减小自复位墙结构在小震下的位移和加速度响应;U型金属阻尼器在中震下开始耗能,在大震和巨震下,其减震效果会超越黏弹性阻尼器。因此,为进一步优化自复位墙结构在不同水准地震作用下的抗震性能,建议结合阻尼器的特点进行合理设计。 Self-centering(SC)wall structures show larger deformation capacity and almost no residual displacement than the traditional structure under earthquake excitation.However,energy dissipaters must be installed to increase the energy dissipation capacity for SC wall structures.Metal dampers are widely used in SC wall structures,which can significantly reduce the seismic response of structures under large earthquakes.However,these dampers have limited effect under small earthquakes.This paper applies the viscoelastic damper,which can dissipate energy under small deformation to SC wall structures.A 10-story SC wall structure was designed with viscoelastic and U-shaped metal dampers as additional energy dissipation components.The comparison between seismic performances of the structure using two energy dissipation mechanisms was conducted through elastic-plastic time-history analysis.Results show that the viscoelastic damper can significantly reduce displacement and acceleration responses under minor earthquakes.However,the energy dissipation capacity of the U-shaped metal damper will surpass that of the viscoelastic damper under large earthquakes.Therefore,the characteristics of different dampers should be considered in the design to further optimize the seismic performance of SC wall structures under earthquakes with different intensities.
作者 朱晓莹 吴浩 周颖 ZHU Xiaoying;WU Hao;ZHOU Ying(College of Civil Engineering,Tongji University,Shanghai 200092,China;State Key Laboratory for Disaster Reduction in Civil Engineering,Tongji University,Shanghai 200092,China)
出处 《地震工程学报》 CSCD 北大核心 2022年第6期1317-1324,共8页 China Earthquake Engineering Journal
基金 国家自然科学基金(51938013,52025083,51908429) 上海市科技计划项目资助(22ZR1465400)。
关键词 自复位墙结构 黏弹性阻尼器 U形金属阻尼器 抗震性能 self-centering wall structure viscoelastic damper U-shaped metal damper seismic performance
  • 相关文献

参考文献6

二级参考文献73

  • 1丁幼亮,耿方方,葛文浩,宋建永,李万恒,王玉倩.多塔斜拉桥风致抖振响应的粘滞阻尼器控制研究[J].工程力学,2015,32(4):130-137. 被引量:24
  • 2左晓宝,李爱群,倪立峰,陈庆福.超弹性形状记忆合金丝(NiTi)力学性能的试验研究[J].土木工程学报,2004,37(12):10-16. 被引量:48
  • 3M. Ataur Rahman,Sri Sritharan.An evaluation of force-based design vs.direct displacement-based design of jointed precast post-tensioned wall systems[J].Earthquake Engineering and Engineering Vibration,2006,5(2):285-296. 被引量:12
  • 4Eatherton M R, Hajjar J F, Deierlein G G, et al. Controlled rocking of steel-framed buildings with replaceable energydissipating fuses [C/CD] ff The 14th World Conference on Earthquake Engineering. Beijing.. [s. n. ], 2008.
  • 5Hajjar J F,Eatherton M,Ma X,et al. Seismic resilience of self- centering steel braced frames with replaceable energy-dissipating fuses- part i: large-scale cyclic testing [C]//7CUEE & 5 ICEE. Tokyo : Tokyo Institute of Technology, 2010.- 1071 - 1077.
  • 6Eatherton M,Hajjar J ,Ma X,et al. Seismic design and behavior of steel frames with controlled rocking - part i: concepts andquasi-static subassembly testing[C]//Proceedings of the 2010 Structures Congress. Orlando.. ASCE, 2010:1523 - 1533.
  • 7Kishiki S, Wada A. Shaking table test on controlled rocking frame of wooden structures[C]//7 CUEE & 5 ICEE. Tokyo: Tokyo Institute of Technology,2010:1091- 1095.
  • 8Midorikawa M, Ishihara T,Azuhata T,et al. Seismic behavior of steel rocking frames by three-dimensional shaking table tests[C] // 7 CUEE & 5 ICEE. Tokyo: Tokyo Institute of Technology, 2010:1085 - 1090.
  • 9I to H, Uchiyama Y, Sakata H, et al. Study on seismic retrofitting using rocking walls and steel dampers[C]//7 CUEE & 5 ICEE. Tokyo: Tokyo Institute of Technology, 2010 : 1335 - 1340.
  • 10Cheng C. Shaking table tests of a self-centering designed bridge substructure[J].Engineering Structures, 2008,30 (12) : 3426.

共引文献398

同被引文献98

引证文献6

二级引证文献7

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