期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
线路纵断面设置对千米级高铁悬索桥动力学行为的影响 被引量:6
1
作者 谭社会 李再帏 +1 位作者 时瑾 马登科 《中国铁道科学》 EI CAS CSCD 北大核心 2021年第6期58-67,共10页
以高速铁路悬索桥五峰山长江大桥为背景,运用多体动力学方法和有限单元法,建立车-线-桥动力相互作用模型,研究线路纵断面设置对千米级高铁悬索桥动力学行为的影响。结果表明:桥上纵断面坡段变化对行车安全性指标基本无影响,纵断面变坡... 以高速铁路悬索桥五峰山长江大桥为背景,运用多体动力学方法和有限单元法,建立车-线-桥动力相互作用模型,研究线路纵断面设置对千米级高铁悬索桥动力学行为的影响。结果表明:桥上纵断面坡段变化对行车安全性指标基本无影响,纵断面变坡点数量增加对车体垂向加速度有一定影响,但对运行舒适性影响不明显,大跨度桥上坡段长度可调整到200 m及以上;车-桥动力相互作用引起的悬索桥动态刚度不平顺易造成车体加速度呈现周期性振动,在进出竖曲线位置易与离心力引起的振动产生车体振动叠加效应;线路竖曲线半径从30000 m减小到25000和20000 m时,对应的车体加速度分别提高0.00341g和0.00827g,对应的轮重减载率分别增加0.00359和0.00898。 展开更多
关键词 千米级悬索 线 纵断面 竖曲线 -线-动力相互作用 动力学行为
在线阅读 下载PDF
Running safety and seismic optimization of a fault-crossing simply-supported girder bridge for high-speed railways based on a train-track-bridge coupling system 被引量:6
2
作者 JIANG Hui ZENG Cong +3 位作者 PENG Qiang LI Xin MAXin-yi SONG Guang-song 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第8期2449-2466,共18页
Bridges crossing active faults are more likely to suffer serious damage or even collapse due to the wreck capabilities of near-fault pulses and surface ruptures under earthquakes.Taking a high-speed railway simply-sup... Bridges crossing active faults are more likely to suffer serious damage or even collapse due to the wreck capabilities of near-fault pulses and surface ruptures under earthquakes.Taking a high-speed railway simply-supported girder bridge with eight spans crossing an active strike-slip fault as the research object,a refined coupling dynamic model of the high-speed train-CRTS III slab ballastless track-bridge system was established based on ABAQUS.The rationality of the established model was thoroughly discussed.The horizontal ground motions in a fault rupture zone were simulated and transient dynamic analyses of the high-speed train-track-bridge coupling system under 3-dimensional seismic excitations were subsequently performed.The safe running speed limits of a high-speed train under different earthquake levels(frequent occurrence,design and rare occurrence)were assessed based on wheel-rail dynamic(lateral wheel-rail force,derailment coefficient and wheel-load reduction rate)and rail deformation(rail dislocation,parallel turning angle and turning angle)indicators.Parameter optimization was then investigated in terms of the rail fastener stiffness and isolation layer friction coefficient.Results of the wheel-rail dynamic indicators demonstrate the safe running speed limits for the high-speed train to be approximately 200 km/h and 80 km/h under frequent and design earthquakes,while the train is unable to run safely under rare earthquakes.In addition,the rail deformations under frequent,design and rare earthquakes meet the safe running requirements of the high-speed train for the speeds of 250,100 and 50 km/h,respectively.The speed limits determined for the wheel-rail dynamic indicators are lower due to the complex coupling effect of the train-track-bridge system under track irregularity.The running safety of the train was improved by increasing the fastener stiffness and isolation layer friction coefficient.At the rail fastener lateral stiffness of 60 kN/mm and isolation layer friction coefficients of 0.9 and 0.8,respectively,the safe running speed limits of the high-speed train increased to 250 km/h and 100 km/h under frequent and design earthquakes,respectively. 展开更多
关键词 high-speed train train-track-bridge interaction fault-crossing ground motion train operation safety speed limit track structure optimization
在线阅读 下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部