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    孙治国, 李翔平, 李宏男, 王东升. 长持时地震动下RC桥墩地震反应分析[J]. 应用基础与工程科学学报, 2023, 31(1): 154-169. DOI: 10.16058/j.issn.1005-0930.2023.01.012
    引用本文: 孙治国, 李翔平, 李宏男, 王东升. 长持时地震动下RC桥墩地震反应分析[J]. 应用基础与工程科学学报, 2023, 31(1): 154-169. DOI: 10.16058/j.issn.1005-0930.2023.01.012
    SUN Zhiguo, LI Xiangping, LI Hongnan, WANG Dongsheng. Analysis on the Seismic Response of RC Bridge Piers Under Long-duration Earthquake Ground Motions[J]. Journal of Basic Science and Engineering, 2023, 31(1): 154-169. DOI: 10.16058/j.issn.1005-0930.2023.01.012
    Citation: SUN Zhiguo, LI Xiangping, LI Hongnan, WANG Dongsheng. Analysis on the Seismic Response of RC Bridge Piers Under Long-duration Earthquake Ground Motions[J]. Journal of Basic Science and Engineering, 2023, 31(1): 154-169. DOI: 10.16058/j.issn.1005-0930.2023.01.012

    长持时地震动下RC桥墩地震反应分析

    Analysis on the Seismic Response of RC Bridge Piers Under Long-duration Earthquake Ground Motions

    • 摘要: 钢筋混凝土(RC)桥墩可能遭受长持时地震动的影响,并引起桥墩严重破坏.为揭示长持时地震动下RC桥墩的地震损伤破坏机理,基于OpenSees平台建立考虑混凝土与钢筋材料累积损伤的RC桥墩抗震数值分析模型.根据谱匹配原则筛选长持时地震动以及与之匹配的短持时地震动记录共计100组,对比分析了地震动持时对RC桥墩地震反应的影响,采用云图法进行了不同持时地震动下桥墩易损性分析.结果表明,剪跨比为6时,长持时地震动下桥墩的最大位移角、残余位移角、曲率延性系数分别是短持时地震动下桥墩反应的1.2~1.3倍、1.6~1.7倍和1.5~1.6倍.剪跨比为4时,桥墩最大位移角、残余位移角、曲率延性系数分别为短持时地震动下桥墩反应的1.6~1.7倍、2.3~2.9倍和2.1~2.6倍.PGA相同时,长持时地震动下桥墩不同损伤状态下的超越概率均大于短持时地震动下的损伤超越概率.长持时地震动将引起桥墩更为显著的损伤,在桥梁抗震性能评价中应该考虑地震动持时这一因素的影响.

       

      Abstract: Reinforced concrete (RC) bridge piers may be affected by long duration earthquake ground motions, and the piers may be seriously damaged.Seismic analysis model for the piers considering the cumulative damages to the concrete and reinforcement was built by using the OpenSees platform.A total of 100 groups of long-duration and matched short-duration earthquake ground motions were selected according to the principle of spectrum matching method.The influence of the ground motion duration on the pier response was studied.The fragility analysis was conducted for the piers under different ground motions by cloud chart method.The results show that, for the piers with aspect ratio of 6, the maximum drift ratio, the residual drift ratio and the curvature ductility factor of the piers under long duration ground motions are 1.2-1.3 times, 1.6-1.7 times and 1.5-1.6 times of that under short duration ground motions.For the piers with aspect ratio of 4, the maximum drift ratio, the residual drift ratio and the curvature ductility factor of the piers under long duration ground motions are 1.6-1.7 times, 2.3-2.9 times and 2.1-2.6 times of that under short duration motions.Under the ground motions with the same PGA, the exceedance probability of piers with different damage states under long-duration ground motions are greater than that under short-duration ground motions.Long duration ground motions would lead to more significant damage to bridge piers.The influence of ground motion duration should be considered in the seismic behavior evaluation of bridges.

       

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