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621.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(1):109-131
It is well known that track defects cause profound effects to the dynamics of railway wagons; normally such problems are examined for cases of wagons running at a constant speed. Brake/traction torques affect the speed profile due to the wheel–rail contact characteristics but most of the wagon–track interaction models do not explicitly consider them in simulation. The authors have recently published a model for the dynamics of wagons subject to braking/traction torques on a perfect track by explicitly considering the pitch degree of freedom for wheelsets. The model is extended for cases of lateral and vertical track geometry defects and worn railhead and wheel profiles. This paper presents the results of the analyses carried out using the model extended to the dynamics of wagons containing less ideal wheel profiles running on tracks with geometry defects and worn rails. 相似文献
622.
凌景文 《城市轨道交通研究》2016,(4):42-46,49
从《地铁设计规范》相关条文规定出发,探讨车辆基地出入线列车一度停车再起动的平纵断面关系;分析列车在停车时、停车后和起动时等三种不同工况的受力情况。根据牵引计算原理,建立其平纵断面关系模型。以长沙市轨道交通2号线西延二期工程为例,计算出入线的最大坡度与最小曲线半径。 相似文献
623.
为保证合肥地铁盾构隧道的施工安全,基于合肥地层情况,通过PLAXIS 3D 岩土有限元软件模拟穿越软土、硬岩及复合地层
3 种不同地层条件的盾构掘进过程,研究开挖面支护力N、盾构钢壳锥度引起的收缩率C 和壁后注浆压力p 对地表沉降和围岩变形
响应的影响规律。研究结果表明: 1)支护力N 和注浆压力p 对地表沉降的影响受地层和埋深的限制较大,收缩率C 则相对较小;
2)从地表沉降上看,盾构掘进参数(N、C、p)对软土层的影响最大,复合地层次之; 3)p 对管片上浮和管片内力的影响显著,不宜设
置过高,软土层对p 最为敏感,硬岩和软硬复合地层次之。最后,将这些影响规律应用于合肥地铁4 号线某区间的盾构掘进参数控
制中,结合现场数据分析,结果表明盾构掘进姿态正确,地表沉降稳定,掘进参数合理可靠。 相似文献
624.
谢树庆 《城市轨道交通研究》2016,(10):81-85
2016年是合肥市轨道交通1号线工程关键的一年,根据工程总体部署,结合信号系统施工调试进度计划安排,对前置工程和当前工程进展情况及计划进行全面分析,对2016年信号系统工程进度计划和目标节点可能存在的风险进行评估,制定相应的管控策略,以确保总工期目标如期实现。 相似文献
625.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(2):235-261
Excitation force spectra are necessary for a realistic prediction of railway-induced ground vibration. The excitation forces cause the ground vibration and they are themselves a result of irregularities passed by the train. The methods of the related analyses – the wavenumber integration for the wave propagation in homogeneous or layered soils, the combined finite-element boundary-element method for the vehicle–track–soil interaction – have already been presented and are the base for the advanced topic of this contribution. This contribution determines excitation force spectra of railway traffic by two completely different methods. The forward analysis starts with vehicle, track and soil irregularities, which are taken from literature and axle-box measurements, calculates the vehicle–track interaction and gets theoretical force spectra as the result. The second method is a backward analysis from the measured ground vibration of railway traffic. A calculated or measured transfer function of the soil is used to determine the excitation force spectrum of the train. A number of measurements of different soils and different trains with different speeds are analysed in that way. Forward and backward analysis yield the same approximate force spectra with values around 1 kN for each axle and third of octave. 相似文献
626.
627.
施奇坚 《城市轨道交通研究》2015,(8)
针对直线电机车辆集电靴正线不能升靴的故障现象,分析了故障发生的原因。从工作原理和作业规程出发,提出加装集电靴人工升靴装置改进建议并优化作业流程。即:在新线车辆设计时增加导电靴升靴功能,对既有车辆不建议进行改造。对于现有列车在正线停放,建议列车保持升靴状态的方法简单可行。 相似文献
628.
《Vehicle System Dynamics: International Journal of Vehicle Mechanics and Mobility》2012,50(1):123-143
ABSTRACTDynamic wheel–rail interaction in railway turnouts is more complicated than on ordinary track. In order to evaluate the derailment behaviour of railway wheelsets in railway turnouts, this paper presents a study of dynamic wheel–rail interaction during a wheel flange climbs on the turnout rails, by applying the elasticity positioning wheelset model. A numerical model is established based on a coupled finite element method and multi-body dynamics, and applied to study the derailment behaviour of a railway wheelset in both the facing and trailing directions in a railway turnout, as well as dynamic wheel–turnout rail interaction during the wheel flange climbing on the turnout rails. The influence of the wheel–rail attack angle and the friction coefficient on the dynamic derailment behaviour is investigated through the proposed model. The results show that the derailment safety for a wheelset passing the railway turnout in facing direction is significantly lower than that for the trailing direction and the ordinary track. The possibility of derailment for the wheelset passing the railway turnout in facing and trailing directions at positive wheel–rail attack angles will increase with an increase in the attack angles, and the possibility of derailment can be reduced by decreasing the friction coefficient. 相似文献
629.
地铁车辆接地技术分析 总被引:1,自引:0,他引:1
钟碧羿 《电力机车与城轨车辆》2008,31(4)
文章主要以上海轨道交通4号线车辆为例,介绍了地铁车辆整车接地的分类和特点,对地铁车辆的接地设计原则进行了分析。 相似文献
630.