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波浪作用下跨海大桥列车走行性研究 被引量:11
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作者 房忱 李永乐 向活跃 《西南交通大学学报》 EI CSCD 北大核心 2017年第6期1068-1074,共7页
针对平潭海峡大桥所处海洋环境复杂恶劣、波浪会影响列车的安全性和舒适性问题,基于车-桥耦合动力仿真方法,利用自主研发的桥梁有限元软件BANSYS(bridge analysis system),分析了极端波浪荷载作用下车辆和桥梁的动力响应,讨论了波浪荷... 针对平潭海峡大桥所处海洋环境复杂恶劣、波浪会影响列车的安全性和舒适性问题,基于车-桥耦合动力仿真方法,利用自主研发的桥梁有限元软件BANSYS(bridge analysis system),分析了极端波浪荷载作用下车辆和桥梁的动力响应,讨论了波浪荷载重现期、车速、水深和桥墩刚度等因素的影响.研究结果表明:波浪荷载对车桥系统的响应影响显著,当波浪荷载重现期为50 a时,桥梁跨中横向位移超限;当波浪荷载较大时,波浪对列车走行性起主要控制作用,当波浪荷载较小时,车桥系统的动力响应对车速较为敏感;低桩承台方案可有效降低波浪荷载作用下桥梁和车辆的动力响应;桥墩基础采用常用的不同标号的混凝土对行车安全性和舒适性影响较小,车辆最大横向加速度相对变化幅值最高达3%. 展开更多
关键词 波浪荷载 列车-桥耦合振动 动力响应 列车走行性
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Dynamic effect of heavy-haul train on seismic response of railway cable-stayed bridge 被引量:7
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作者 ZHU Zhi-hui GONG Wei +3 位作者 WANG Kun LIU Yu DAVIDSON Michael T JIANG Li-zhong 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第7期1939-1955,共17页
This paper focuses on understanding and evaluating the dynamic effect of the heavy-haul train system on the seismic performance of a long-span railway bridge. A systematic study on the effect of heavy-haul trains on b... This paper focuses on understanding and evaluating the dynamic effect of the heavy-haul train system on the seismic performance of a long-span railway bridge. A systematic study on the effect of heavy-haul trains on bridge seismic response has been conducted, considering the influence of vehicle modeling strategies and dynamic characteristics of the seismic waves. For this purpose, the performance of a long-span cable-stayed railway bridge is assessed with stationary trains atop it, where the heavy-haul vehicles are modeled in two different ways: the multi-rigid body model with suspension system and additional mass model. Comparison of the bridge response in the presence or absence of the train system has been conducted, and the vehicle loading situation, which includes full-load and no-load, is also discussed. The result shows that during the earthquake, the peak moment of the main girder and peak stress of stay cables increase by 80% and by 40% in the presence of fully loaded heavy-haul trains, respectively. At the same time, a considerable decrease appears in the peak acceleration of the main girder. This proves the existence of the damping effect of the heavy-haul train system, and this effect is more obvious for the fully loaded vehicles. Finally, this paper proposes an efficient vehicle modeling method with 2 degrees of freedom(DOF) for simplifying the treatment of the train system in bridge seismic checking. 展开更多
关键词 train-bridge interaction heavy-haul train cable-stayed bridge EARTHQUAKE live load
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Coupling vibration analysis of high-speed maglev train-viaduct systems with control loop failure 被引量:5
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作者 GUO Wei CHEN Xue-yuan +7 位作者 YE Yi-tao HU Yao LUO Yi-kai SHAO Ping HUANG Ren-qiang WANG Xu-yixin GUO Zhen TAN Sui 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2771-2790,共20页
The risk of failure of the control loop can occur when a high-speed maglev train runs on viaduct.Meanwhile,the failure of the levitation magnets which balances the gravity of the maglev train could cause the train col... The risk of failure of the control loop can occur when a high-speed maglev train runs on viaduct.Meanwhile,the failure of the levitation magnets which balances the gravity of the maglev train could cause the train collision with track.To study the dynamic response of the train and the viaduct when the levitation magnet control loop failure occurs,a high-speed maglev train-viaduct coupling model,which includes a maglev controller fitted by measured force-gap data and considers the actual structure of train and viaduct,is established.Then the accuracy and effectiveness of the established approach are validated by comparing the computed dynamic responses and frequencies with the measurement results.After that,the dynamic responses of maglev train and viaduct are discussed under normal operation and control loop failures,and the most disadvantageous combination of control loop failures is obtained.The results show that when a single control loop fails,it only has a great influence on the failed electromagnet,and the maglev response of adjacent electromagnets has no obvious change and no collision occurs.But there is a risk of rail collisions when the dual control loop fails. 展开更多
关键词 high-speed maglev train control loop failure coupling vibration maglev control
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