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地震作用下框架-剪力墙结构动力响应研究

Study of Seismic Earthquake for Frame-Shear Wall Structures Under Earthquake

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【作者】 刘彦辉谭平周福霖杜永峰闫维明

【Author】 LIU Yan-hui 1,2,TAN Ping 2,ZHOU Fu-lin 1,2,DU Yong-feng 3,YAN Wei-ming 1(1.Beijing key Lab of Earthquake Eng.and Structural Retrofit,Beijing Univ.of Technol.,Beijing 100124,China;2.State Key Lab.for Seismic Reduction /Control & Structural Safety(Cultivation),Guangzhou Univ.,Guangzhou 510405,China;3.Northwest Center for Disaster Mitigation in Civil Eng.,Ministry of Education,Lanzhou 730050,China)

【机构】 北京工业大学工程抗震与结构诊治北京市重点实验室广州大学减震控制与结构安全国家重点实验室(培育)西部土木工程防灾减灾教育部工程研究中心

【摘要】 针对框架-剪力墙结构中框架与剪力墙相互作用下的地震响应求解问题,建立了高层框架-剪力墙结构的动力分析模型。框架结构部分对剪力墙结构部分的影响通过边界条件的引入,推导出框架-剪力墙结构的频率方程及振型正交条件,进一步对无限自由度框架-剪力墙结构的振动方程进行解耦,推导出框架-剪力墙结构的广义质量及广义荷载,然后通过振型叠加的方法求解结构的地震响应。最后,对一栋10层框架-剪力墙结构进行动力特性及地震响应仿真分析。仿真结果显示,建立的动力模型及地震响应求解的结果与有限元分析结果基本一致,其计算精度满足要求,可以减小计算的工作量。

【Abstract】 A dynamic modal was presented to study the arthquake effect on tall frame-shear wall buildings under the interaction of frame structures and shear wall structures.The influence of the part of frame structure to tall frame-shear wall buildings was considered by boundary conditions,and the frequency equation and mode orthogonal conditions of tall frame-shear wall buildings were derived.Then vibration equation of infinite-degrees frame-shear wall buildings was decoupled by these orthogonal conditions and the generalized mass and stiffness were obtained.Therefore,the seismic responses of tall frame-shear wall buildings can be solved by the mode superposition method.In order to validate the correctness of the dynamic modal and the method of solving earthquake effects for tall frame-shear wall buildings,a ten-story frame-shear wall building was chosen to analyze dynamic character and seismic response.Results showed that the dynamic character and seismic response obtained by the dynamic modal and the method of solving seismic response are basically consistent with finite element,the calculation accuracy can meet demand and calculation work can be reduced.

【基金】 国家自然科学青年基金资助项目(51008009);中国博士后基金面上项目(20100480175);国家自然科学基金重大研究计划(90815027)
  • 【文献出处】 四川大学学报(工程科学版) ,Journal of Sichuan University(Engineering Science Edition) , 编辑部邮箱 ,2011年05期
  • 【分类号】TU398.2;TU311.3
  • 【被引频次】4
  • 【下载频次】482
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