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跨座式单轨列车-轨道梁耦合动力学特性研究 被引量:1
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作者 马湿洪 《内燃机与配件》 2021年第5期40-41,共2页
跨座式单轨列车-轨道梁系统的耦合振动问题涉及因素多,有待进一步研究。基于刚柔耦合理论建立跨座式单轨列车-轨道梁耦合动力学模型,以探讨不同轨道梁跨距和载重状态对系统响应的影响。结果表明:轨道梁跨中竖向挠度和横向挠度均随跨距... 跨座式单轨列车-轨道梁系统的耦合振动问题涉及因素多,有待进一步研究。基于刚柔耦合理论建立跨座式单轨列车-轨道梁耦合动力学模型,以探讨不同轨道梁跨距和载重状态对系统响应的影响。结果表明:轨道梁跨中竖向挠度和横向挠度均随跨距的增加而增大,跨中竖向挠度影响更显着;跨中竖向挠度随载客量的增大而增大,横向挠度基本不受载客量的影响。研究可为跨座式单轨交通系统的结构设计优化和运输管理提供理论基础。 展开更多
关键词 跨座式单轨 列车-轨道梁耦合 跨距 载重 运行平稳性
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跨座式单轨交通系统耦合振动特性 被引量:9
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作者 刘羽宇 葛玉梅 杨翊仁 《交通运输工程学报》 EI CSCD 北大核心 2010年第2期46-53,共8页
将列车的每节车厢简化为15自由度的动力系统,由拉格朗日方程导出其振动微分方程,将轨道梁简化为欧拉梁,基于能量法和车辆与轨道梁位移协调条件,建立了车辆和轨道梁耦合运动控制方程,研究了跨座式单轨交通轨道梁的动力特性。计算了列车... 将列车的每节车厢简化为15自由度的动力系统,由拉格朗日方程导出其振动微分方程,将轨道梁简化为欧拉梁,基于能量法和车辆与轨道梁位移协调条件,建立了车辆和轨道梁耦合运动控制方程,研究了跨座式单轨交通轨道梁的动力特性。计算了列车以不同车速通过时轨道梁的动力响应,并比较了计算结果与实测结果。比较结果表明:理论计算结果与实测结果基本吻合,车速对轨道梁挠度的影响较小,但对加速度影响较大,加速度随车速增大而增大,在40~50 km.h-1处出现最大值,之后随车速增大反而减小;轮胎模型与轨道表面不平度功率谱密度函数对轨道梁横向响应计算结果影响较大,使计算误差增大。 展开更多
关键词 城市轨道交通 跨座式单轨交通 列车-轨道梁耦合系统 动力响应
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Dynamic analysis of a high-speed train operating on a curved track with failed fasteners 被引量:19
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作者 Li ZHOU Zhi-yun SHEN 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2013年第6期447-458,共12页
A high-speed train-track coupling dynamic model is used to investigate the dynamic behavior of a high-speed train operating on a curved track with failed fasteners. The model considers a high-speed train consisting of... A high-speed train-track coupling dynamic model is used to investigate the dynamic behavior of a high-speed train operating on a curved track with failed fasteners. The model considers a high-speed train consisting of eight vehicles coupled with a ballasted track. The vehicle is modeled as a multi-body system, and the rail is modeled with a Timoshenko beam resting on the discrete sleepers. The vehicle model considers the effect of the end connections of the neighboring vehicles on the dynamic behavior. The track model takes into account the lateral, vertical, and torsional deformations of the rails and the effect of the discrete sleeper support on the coupling dynamics of the vehicles and the track. The sleepers are assumed to move backward at a constant speed to simulate the vehicle running along the track at the same speed. The train model couples with the track model by using a Hertzian contact model for the wheel/rail normal force calculation, and the nonlinear creep theory by Shen et al. (1984) is used for wheel/rail tangent force calculation. In the analysis, a curved track of 7000-m radius with failed fasteners is selected, and the effects of train operational speed and the number of failed fasteners on the dynamic behaviors of the train and the track are investigated in detail. Furthermore, the wheel/rail forces and derailment coefficient and the wheelset loading reduction are analyzed when the high-speed train passes over the curved track with the different number of continuously failed fasteners at different operational speeds. Through the detailed numerical analysis, it is found that the high-speed train can operate normally on the curved track of 7000-m radius at the speeds of 200 km/h to 350 km/h. 展开更多
关键词 High-speed train Ballast track Failed fastener Wheel/Rail force Derailment coefficient Wheelset loading reduction
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