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基于时变地震损伤模型的多龄期钢框架结构易损性分析
引用本文:王晓飞,王鹏飞,贾虎,郑伟花,田进.基于时变地震损伤模型的多龄期钢框架结构易损性分析[J].西北地震学报,2016,38(2):192-200.
作者姓名:王晓飞  王鹏飞  贾虎  郑伟花  田进
作者单位:南阳师范学院土木建筑工程学院, 河南 南阳 473061;南阳师范学院土木建筑工程学院, 河南 南阳 473061;南阳师范学院土木建筑工程学院, 河南 南阳 473061;南阳师范学院土木建筑工程学院, 河南 南阳 473061;青岛市公用建筑设计研究院有限公司, 山东 青岛 710055
基金项目:校级专项项目(ZX2016009);国家青年科学基金项目(11304168)
摘    要:基于时变地震损伤模型提出酸性大气环境作用下多龄期钢框架结构概率地震易损性分析的方法及步骤;考虑服役龄期对钢框架结构抗震性能的影响,分别建立时变概率地震需求模型、时变概率抗震能力模型及时变易损性模型;在概率地震需求分析及概率抗震能力分析的基础上,得到多龄期(20年、30年、40年、50年)钢框架结构的易损性模型及易损性曲线。

关 键 词:多龄期  钢框架结构  时变地震损伤模型  易损性
收稿时间:2015/4/24 0:00:00

Seismic Vulnerability Analysis of Multiage Steel Frame Structures Based on Time-varying Seismic Damage Model
WANG Xiao-fei,WANG Peng-fei,JIA Hu,ZHENG Wei-hua and TIAN Jin.Seismic Vulnerability Analysis of Multiage Steel Frame Structures Based on Time-varying Seismic Damage Model[J].Northwestern Seismological Journal,2016,38(2):192-200.
Authors:WANG Xiao-fei  WANG Peng-fei  JIA Hu  ZHENG Wei-hua and TIAN Jin
Institution:Academy of Civil Engineering & Architecture, Nanyang Normal University, Nanyang 473061, Henan, China;Academy of Civil Engineering & Architecture, Nanyang Normal University, Nanyang 473061, Henan, China;Academy of Civil Engineering & Architecture, Nanyang Normal University, Nanyang 473061, Henan, China;Academy of Civil Engineering & Architecture, Nanyang Normal University, Nanyang 473061, Henan, China;Qingdao Institute of Public Architectural Design Co.Ltd, Qingdao 266071, Shandong, China
Abstract:In recent years, because of the frequency of earthquakes,steel has been widely used in the construction of civilian residential structures owing to its excellent seismic performance.However,considering that steel structures are widely used,there is a durability problem because of steel corrosion,which has become increasingly serious.Corrosion weakens steel member cross-sections and reduces steel''s mechanical properties,ultimately affecting the seismic performance of steel structures.Seismic vulnerability analysis can be used to predict the damage probability at different levels of a structure under earthquakes of different magnitudes.As such,it has an important application value in seismic design,reinforcement,and maintenance decisions regarding structures.Seismic vulnerability research methods include empirical,testing,and analytical methods or a combination of two of these methods.For the most seismic hazard data,empirical vulnerability is the most accurate method,but not all areas experience an adequate number of earthquakes for researchers to obtain sufficient data to evaluate the structural damage probability at all levels.Experimental study methods of vulnerability analysis are also credible,but their costs are relatively high.Compared with the abovementioned two methods,an advantage of the analytical method of determining vulnerability is that it is a rapid and low-cost approach.The main factors that affect the seismic vulnerability of building structures are structural type,architectural age (including specifications and construction period of building design),intensity of fortification,site class,and number of layers.While research on the seismic vulnerability of various structures is quite mature,there has been scant consideration of the impact of service age on the seismic vulnerability of building structures or fragility curves of multiage structures.Based on the time-varying seismic damage model,we propose the use of an analysis method that includes the probabilistic seismic vulnerability steps of multiage steel frame structures under the corrosive action at an acidic atmospheric environment.We consider the influence of service age on the seismic performance of steel frame structures and establish the time-varying probabilistic seismic demand model,time-varying probabilistic seismic capacity model,and time-varying vulnerability model.Based on our analysis of the probabilistic seismic demand and probabilistic seismic capacity,we obtain a vulnerability model and vulnerability curve for multiage (20,30,40,and 50 years) steel frame structures.
Keywords:multiage  steel frame structure  time-varying seismic damage model  vulnerability
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