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阻尼器对斜拉桥减震性能的影响
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作者 张景春 《交通世界》 2015年第36期110-111,共2页
以某地震多发区的特大桥为研究对象,对采取的减震方式进行数值分析。利用逐步积分的方法,探讨了阻尼器对该桥抗震性能的影响。结果表明,阻尼器设置的位置和布置方式合理有效,明显改善了结构内力和位移。具有一定的参考价值。
关键词 斜拉桥减震 逐步积分 数值计算
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千米级斜拉桥横向减震体系振动台试验 被引量:11
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作者 周连绪 叶爱君 《中国公路学报》 EI CAS CSCD 北大核心 2019年第9期71-79,共9页
工程中常采用的斜拉桥横向固定体系会增大桥墩、桥塔及其基础的抗震需求,从而增大斜拉桥在地震作用下的损伤破坏风险.为解决这一问题,以已研发的桥梁新型横向钢阻尼器为减震耗能装置,采用振动台试验方法,研究大跨度斜拉桥横向减震体系... 工程中常采用的斜拉桥横向固定体系会增大桥墩、桥塔及其基础的抗震需求,从而增大斜拉桥在地震作用下的损伤破坏风险.为解决这一问题,以已研发的桥梁新型横向钢阻尼器为减震耗能装置,采用振动台试验方法,研究大跨度斜拉桥横向减震体系在近、远场地震作用下的减震效果.以苏通大桥为背景,设计1/35几何相似比的斜拉桥全桥试验模型,并分别进行横向减震体系和传统的横向固定体系的振动台试验.其中,将钢阻尼器与滑动型球钢支座并联布置于桥墩处、钢阻尼器布置于桥塔处形成横向减震体系.基于试验结果进行减震体系的减震行为分析.研究结果表明:在近、远场地震作用下,减震体系均能显著地减小主梁传递给桥墩和桥塔的地震力,其中墩梁、塔梁连接横向传力均减小50%以上,且将主梁位移限制在可接受范围内;减震体系也显著减小了塔身位移、曲率以及墩底曲率需求,其中,塔底截面曲率平均减小了34%,近塔辅助墩墩底曲率平均减小了67%;钢阻尼器拥有饱满的滞回曲线,但其滞回特性与地震输入有关;相对于支座的摩擦耗能,钢阻尼器的耗能能力更显著;在带有速度脉冲的近场地震作用下,钢阻尼器以及支座的位移响应具有明显的脉冲特点. 展开更多
关键词 桥梁工程 斜拉桥横向减震体系 振动台试验 钢阻尼器 近远场地震动 速度脉冲
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Mechanical Analysis and Numerical Simulation for New Type of Dynamic Control Devices
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作者 CHEN Suhua LI Ruiqi +2 位作者 FEI Liang YU Zhiguang DING Jianming 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第6期735-749,共15页
The conventional dynamic control devices,such as fluid viscous damper(VFD)and isolating bearings,are unsuitable for the double-deck cable-stayed bridge due to a lack of sustainability,so it is necessary to introduce s... The conventional dynamic control devices,such as fluid viscous damper(VFD)and isolating bearings,are unsuitable for the double-deck cable-stayed bridge due to a lack of sustainability,so it is necessary to introduce some high-tech dynamic control devices to reduce dynamic response for double-deck cable-stayed bridges under earthquakes.A(90+128)m-span double-deck cable-stayed bridge with a steel truss beam is taken as the prototype bridge.A 3D finite element model is built to conduct the nonlinear time-history analysis of different site categories in fortification intensityⅨ(0.40 g)degree area.Two new types of dynamic control devices-cable sliding friction aseismic bearings(CSFABs)and elasticity fluid viscous dampers composite devices(EVFDs)are introduced to reduce the dynamic responses of double-deck cable-stayed bridges with steel truss beam.The parametric optimization design for the damping coefficient C and the elastic stiffness of spring K of EVFDs is conducted.The following conclusions are drawn:(1)The hybrid support system by EVFDs and CSFABs play a good function under both seismic and regular work,especially in eliminating the expansion joints damage;(2)The hybrid support system can reduce the beam-end displacement by 75%and the tower-bottom bending moment by 60%under the longitudinal seismic excitation.In addition,it can reduce the pier-bottom bending moment by at least 45%under transverse seismic and control the relative displacement between the pier and beam within 0.3 m.(3)Assuming the velocity indexα=0.3,the parametric optimization suggests the damping coefficient C as 2000 kN·s·m-1in siteⅠ0,4000kN·s·m-1in siteⅡ,6000 kN·s·m-1in siteⅣ,and the elastic stiffness of spring K as 10000 kN/m in siteⅠ0,50000 kN/m in siteⅡ,and 100000 kN/m in siteⅣ. 展开更多
关键词 dynamic control device double-deck cable-stayed bridge with steel truss beam cable-sliding friction aseismic bearings(CSFABs) elasticity fluid viscous dampers composite devices(EVFDs)
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