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高速磁浮车-轨耦合系统动态机理与振动响应 被引量:6
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作者 付善强 梁鑫 丁叁叁 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2023年第3期314-320,384,共8页
对高速磁浮车-轨耦合系统进行动态机理和振动响应研究。首先,对高速磁浮中的各类耦合关系进行建模;其次,分别分析了动态和静态条件下的车-轨耦合作用机理;然后,建立了高速磁浮车-轨耦合动力学有限元模型;最后,对磁浮列车高速通过桥梁时... 对高速磁浮车-轨耦合系统进行动态机理和振动响应研究。首先,对高速磁浮中的各类耦合关系进行建模;其次,分别分析了动态和静态条件下的车-轨耦合作用机理;然后,建立了高速磁浮车-轨耦合动力学有限元模型;最后,对磁浮列车高速通过桥梁时轨道梁、功能件的动力响应和车-轨共振速度进行分析。结果表明:高速运行时车-轨作用频率不同,长时间共振速度下运行时车-轨振动明显增大;若桥梁动力放大系数小于1.2,则基频比最小值为1.16;若桥梁动力放大系数小于1.3,则基频比最小值为1.04。 展开更多
关键词 高速磁浮 车-轨相互作用 动态机理 耦合振动 放大系数
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A novel refined dynamic model of high-speed maglev train-bridge coupled system for random vibration and running safety assessment 被引量:1
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作者 MAO Jian-feng LI Dao-hang +3 位作者 YU Zhi-wu CAI Wen-feng GUO Wei ZHANG Guang-wen 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2532-2544,共13页
Running safety assessment and tracking irregularity parametric sensitivity analysis of high-speed maglev train-bridge system are of great concern,especially need perfect refinement models in which all properties can b... Running safety assessment and tracking irregularity parametric sensitivity analysis of high-speed maglev train-bridge system are of great concern,especially need perfect refinement models in which all properties can be well characterized based on various stochastic excitations.A three-dimensional refined spatial random vibration analysis model of high-speed maglev train-bridge coupled system is established in this paper,in which multi-source uncertainty excitation can be considered simultaneously,and the probability density evolution method(PDEM)is adopted to reveal the system-specific uncertainty dynamic characteristic.The motion equation of the maglev vehicle model is composed of multi-rigid bodies with a total 210-degrees of freedom for each vehicle,and a refined electromagnetic force-air gap model is used to account for the interaction and coupling effect between the moving train and track beam bridges,which are directly established by using finite element method.The model is proven to be applicable by comparing with Monte Carlo simulation.By applying the proposed stochastic framework to the high maglev line,the random dynamic responses of maglev vehicles running on the bridges are studied for running safety and stability assessment.Moreover,the effects of track irregularity wavelength range under different amplitude and running speeds on the coupled system are investigated.The results show that the augmentation of train speed will move backward the sensitive wavelength interval,and track irregularity amplitude influences the response remarkably in the sensitive interval. 展开更多
关键词 maglev train-bridge interaction electromagnetic force-air gap model stochastic dynamic analysis running safety assessment probability density evolution method
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悬空轨枕对轨道结构动力响应的影响(英文) 被引量:7
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作者 Jabbar.阿里.扎克瑞 夏禾 范俊杰 《北方交通大学学报》 EI CSCD 北大核心 2000年第1期50-55,共6页
首先建立了带有悬空轨枕的铁路轨道数学模型,在此基础上推导了车—轨系统运动方程,其中考虑了轮轨非线性接触力引起的非线性问题,然后利用逐步积分法解方程重点分析了悬空轨枕对轨道各个组成部分动力响应的影响,结果表明如果在悬空部分... 首先建立了带有悬空轨枕的铁路轨道数学模型,在此基础上推导了车—轨系统运动方程,其中考虑了轮轨非线性接触力引起的非线性问题,然后利用逐步积分法解方程重点分析了悬空轨枕对轨道各个组成部分动力响应的影响,结果表明如果在悬空部分存在轨道不平顺。 展开更多
关键词 车-轨相互作用 悬空 道结构 动力响应
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Dynamic performance of heavy-haul combined train applying emergency braking on straight line 被引量:6
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作者 刘鹏飞 王开云 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第8期1898-1908,共11页
A heavy-haul train-track coupled model is developed. Taking the emergency braking of the 2×104 t combined train as example, the train longitudinal impulse, the coupler dynamic behaviors and wheel-rail interaction... A heavy-haul train-track coupled model is developed. Taking the emergency braking of the 2×104 t combined train as example, the train longitudinal impulse, the coupler dynamic behaviors and wheel-rail interactions of vehicles distributing in the different positions are analyzed. The results indicate that under the coupler compressing forces, the couplers of middle locomotives may tilt to the free swing limits, which induces the unidirectional tilt of their connected wagon couplers. Consequently, the coupler longitudinal forces produce the lateral components, and then affect the wheel-rail dynamic interaction. The performance of the middle locomotive and their neighboring freight wagons deteriorate significantly, becoming the most dangerous parts in the combined train. The wagons disconnecting with the locomotives can basically keep their couplers to stabilize in the centering positions, even though the maximum coupler longitudinal force acts on it. And its corresponding running safety also has little changes. 展开更多
关键词 heavy-haul train longitudinal impulse vehicle–track coupled dynamics emergency braking
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