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基于宽频带混合法的跨断层地震动模拟研究
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作者 陈何煜 陈力波 +2 位作者 栗怀广 金洋 谷音 《地震工程与工程振动》 CSCD 北大核心 2024年第5期125-138,共14页
跨断层区域地震动(跨断层工程结构所在极近断层区域的地震动,以下简称跨断层地震动)与近场地震动在空间上的分布规律存在显著差异,而跨断层地震动记录匮乏导致跨断层结构抗震研究难以开展。文中简要介绍了宽频带混合法模拟地震动的基本... 跨断层区域地震动(跨断层工程结构所在极近断层区域的地震动,以下简称跨断层地震动)与近场地震动在空间上的分布规律存在显著差异,而跨断层地震动记录匮乏导致跨断层结构抗震研究难以开展。文中简要介绍了宽频带混合法模拟地震动的基本理论,并以则木河断层为工程背景进行跨断层地震动的模拟,系统研究了跨断层地震动的分布规律。结果表明,模拟的跨断层地震动符合断层滑动模式,并且存在显著的方向性效应、上盘效应和滑冲效应,总体上模拟的跨断层地震动强度符合一定的衰减规律,但受断层破裂的影响会导致不规律甚至反规律。同时,实际地表破裂位置与断层破裂大滑移区对跨断层地震动分布规律会造成较大的影响。通过宽频带混合法人工模拟的跨断层地震动时间序列能解决跨断层地震动实测记录不足的问题,为跨断层结构抗震研究提供有力支撑。 展开更多
关键词 跨断层地震动 左旋逆走滑断层 地震分布规律 宽频带混合法 断层破裂模型
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跨走滑断层多跨简支梁桥地震反应特征与参数分析
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作者 石岩 王文仙 +2 位作者 赵昊淼 杨雄 柴文阳 《地震研究》 CSCD 北大核心 2024年第3期461-473,共13页
为揭示跨走滑断层多跨简支梁桥的地震响应规律,以1座4跨简支梁桥为研究对象,基于OpenSees建立了3维动力弹塑性分析模型;采用“分解-叠加”法合成40组跨断层地震动,以多点激励的方式输入到建立的动力分析模型,进行非线性动力时程分析,研... 为揭示跨走滑断层多跨简支梁桥的地震响应规律,以1座4跨简支梁桥为研究对象,基于OpenSees建立了3维动力弹塑性分析模型;采用“分解-叠加”法合成40组跨断层地震动,以多点激励的方式输入到建立的动力分析模型,进行非线性动力时程分析,研究了跨走滑断层多跨简支梁桥在地震动作用下的地震反应特征,分析了断层的穿越角度和穿越位置对跨走滑断层多跨简支梁桥地震响应的影响。结果表明:地震动作用下跨走滑断层桥梁结构会发生剧烈的位移反应;断层穿越角度和穿越位置对桥梁地震反应有显著的影响;地震动作用下跨断层简支梁桥的扭转效应不可忽视。 展开更多
关键词 跨断层地震动 简支梁桥 地震响应 地震损伤 参数分析
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Running safety and seismic optimization of a fault-crossing simply-supported girder bridge for high-speed railways based on a train-track-bridge coupling system 被引量:10
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作者 JIANG Hui ZENG Cong +3 位作者 PENG Qiang LI Xin MAXin-yi SONG Guang-song 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2449-2466,共18页
Bridges crossing active faults are more likely to suffer serious damage or even collapse due to the wreck capabilities of near-fault pulses and surface ruptures under earthquakes.Taking a high-speed railway simply-sup... Bridges crossing active faults are more likely to suffer serious damage or even collapse due to the wreck capabilities of near-fault pulses and surface ruptures under earthquakes.Taking a high-speed railway simply-supported girder bridge with eight spans crossing an active strike-slip fault as the research object,a refined coupling dynamic model of the high-speed train-CRTS III slab ballastless track-bridge system was established based on ABAQUS.The rationality of the established model was thoroughly discussed.The horizontal ground motions in a fault rupture zone were simulated and transient dynamic analyses of the high-speed train-track-bridge coupling system under 3-dimensional seismic excitations were subsequently performed.The safe running speed limits of a high-speed train under different earthquake levels(frequent occurrence,design and rare occurrence)were assessed based on wheel-rail dynamic(lateral wheel-rail force,derailment coefficient and wheel-load reduction rate)and rail deformation(rail dislocation,parallel turning angle and turning angle)indicators.Parameter optimization was then investigated in terms of the rail fastener stiffness and isolation layer friction coefficient.Results of the wheel-rail dynamic indicators demonstrate the safe running speed limits for the high-speed train to be approximately 200 km/h and 80 km/h under frequent and design earthquakes,while the train is unable to run safely under rare earthquakes.In addition,the rail deformations under frequent,design and rare earthquakes meet the safe running requirements of the high-speed train for the speeds of 250,100 and 50 km/h,respectively.The speed limits determined for the wheel-rail dynamic indicators are lower due to the complex coupling effect of the train-track-bridge system under track irregularity.The running safety of the train was improved by increasing the fastener stiffness and isolation layer friction coefficient.At the rail fastener lateral stiffness of 60 kN/mm and isolation layer friction coefficients of 0.9 and 0.8,respectively,the safe running speed limits of the high-speed train increased to 250 km/h and 100 km/h under frequent and design earthquakes,respectively. 展开更多
关键词 high-speed train train-track-bridge interaction fault-crossing ground motion train operation safety speed limit track structure optimization
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