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框支剪力墙耗能减震结构的地震反应分析
引用本文:李慧,魏彪,杜永峰,李永祥.框支剪力墙耗能减震结构的地震反应分析[J].甘肃科学学报,2009,21(1):113-116.
作者姓名:李慧  魏彪  杜永峰  李永祥
作者单位:1. 西部土木工程防灾减灾,教育部工程研究中心,甘肃,兰州,730070;兰州理工大学,土木工程学院,甘肃,兰州,730050
2. 兰州理工大学,土木工程学院,甘肃,兰州,730050
摘    要:对于底部框架部分侧向刚度小,上部剪力墙部分侧向刚度大的框支剪力墙结构,提出在结构底部框架部分安装粘滞阻尼器的方法进行耗能减震控制,提高其抗震性能.运用大型有限元结构分析软件SAP2000建立了1栋21层框支剪力墙结构模型,对其进行了纯底部框架结构、普通落地剪力墙结构和安装耗能阻尼器状态下结构的地震时程分析,结果表明,耗能阻尼器能够有效地降低整个结构的地震反应,地震时输入结构的大部分能量由安装于底部的阻尼器耗散,从而保护了主体结构,耗能减震效果明显.

关 键 词:框支剪力墙  粘滞阻尼器  耗能减震  时程分析

Seismic Response Analysis on Frame-Supported Shear-Wall Structures and Their Effects of Energy Dissipation and Seismic Mitigation
LI Hui,WEI Biao,DU Yong-feng,LI Yong-xiang.Seismic Response Analysis on Frame-Supported Shear-Wall Structures and Their Effects of Energy Dissipation and Seismic Mitigation[J].Journal of Gansu Sciences,2009,21(1):113-116.
Authors:LI Hui  WEI Biao  DU Yong-feng  LI Yong-xiang
Institution:LI Hui,WEI Biao, DU Yong-feng, LI Yong-xiang(1. Northwest Center for Disaster Mitigation in Civil Engineering ,Ministry of Education ,Lanzhou 730070,China; 2. School of Civil Engineering, Lanzhou University of Science and Technology, Lanzhou 730050, China)
Abstract:As for frame-supported shear-wall structures, which have a character that the lateral stiffness of the frame part is so small compared with shear-wall part, so the energy dissipation and seismic mitigation method is proposed to solve the problem, aiming at improving the seismic behavior of these structures. 21-story models of frame-supported shear-wall structure are erected with finite element analysis software SAP2000,for the three models of pure frame substructure, ordinary fall-to-ground shear-wall struc- ture and build-in viscous dampers structure a seismic time history analysis is conducted. The results show that the viscous damper can efficiently reduce the seismic response of the structure ,in the proceeding of the earthquake , and that most energy imported in the structure is dissipated by dampers, so the main structure is protected. The effects of energy dissipation and seismic mitigation are quite obvious.
Keywords:frame-supported shear-wall structure viscous damper energy dissipation and seismic mitigation  time history analysis
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