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近场地震作用下RC框架鲁棒性分析
引用本文:杜永峰,宋翔,包超,朱翔,谈志鸿.近场地震作用下RC框架鲁棒性分析[J].振动与冲击,2016,35(3):192-197.
作者姓名:杜永峰  宋翔  包超  朱翔  谈志鸿
作者单位:1 兰州理工大学防震减灾研究所,兰州 730050;
2 兰州理工大学西部土木工程防灾减灾教育部工程研究中心,兰州 730050
摘    要:基于地震作用下结构的受力的特征,提出构件易损性及重要性系数的改进计算方法,以此定量分析结构在近场地震作用下的鲁棒性。通过分析比较RC框架在近场有无速度脉冲两组地震动,不同强度下的构件易损性系数、重要性系数和结构鲁棒性系数,揭示了RC框架结构在近场地震作用下抗连续倒塌鲁棒性的特点,并依此提出增强结构鲁棒性的措施。研究表明:相比于层间位移角等结构的整体响应指标,鲁棒性则更能具体地反应出结构在近场地震下的状态;与近场无速度脉冲型地震动相比,速度脉冲型地震动会对结构构件的易损性与重要性造成更为明显的影响,从而降低了整体结构的鲁棒性,对结构安全存在更为不利的影响。

关 键 词:近场地震动  RC框架结构  构件易损性系数  构件重要性系数  结构鲁棒性  

Analysis on robustness of RC frame structure subject to near-field ground motions
Du Yongfeng,Song Xiang,Bao Chao,Zhu Xiang,Tan Zhihong.Analysis on robustness of RC frame structure subject to near-field ground motions[J].Journal of Vibration and Shock,2016,35(3):192-197.
Authors:Du Yongfeng  Song Xiang  Bao Chao  Zhu Xiang  Tan Zhihong
Affiliation:1. Western Center of Disaster Mitigation in Civil Engineering of Ministry of Education, Lanzhou University of Technology, Lanzhou 730050; 2.Institute of Earthquake Protection and Disaster Mitigation, Lanzhou University of Technology, Lanzhou 730050
Abstract:
Based on the mechanics characteristics of structure subjected to seismic action, an improved calculation method for coefficients of vulnerability and importance of constructional element was proposed in order to analyze the structural robustness under near-field earthquake. Two groups of ground motions, with or without velocity pulses, were applied to reinforced concrete frame structure and the coefficients of vulnerability, importance and robustness of element were also compared under different seismic intensities, which aimed to reveal the characteristics of structural robustness representing the ability of resisting progressive collapse and propose relative measures to enhance the structural robustness. The results show that the robustness can reflect the state of structure subjected to seismic action better than other response indexes such as the story-drift angel. The seismic action with velocity pulses has more evident impacts on the vulnerability and importance of structure than that without velocity pulses and can reduce the structural robustness, causing a more adverse effect on the structural safety.  
Keywords:near-field earthquakes                                                      reinforced concrete frame                                                      member vulnerability coefficient                                                      member importance coefficient                                                      structural robustness
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