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Probabilistic model and analysis of coupled train-ballasted track-subgrade system with uncertain structural parameters 被引量:6
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作者 MAO Jian-feng XIAO Yuan-jie +2 位作者 YU Zhi-wu Erol TUTUMLUER ZHU Zhi-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第7期2238-2256,共19页
Random dynamic responses caused by the uncertainty of structural parameters of the coupled train-ballasted track-subgrade system under train loading can pose safety concerns to the train operation.This paper introduce... Random dynamic responses caused by the uncertainty of structural parameters of the coupled train-ballasted track-subgrade system under train loading can pose safety concerns to the train operation.This paper introduced a computational model for analyzing probabilistic dynamic responses of three-dimensional(3D)coupled train-ballasted track-subgrade system(TBTSS),where the coupling effects of uncertain rail irregularities,stiffness and damping properties of ballast and subgrade layers were simultaneously considered.The number theoretical method(NTM)was employed to design discrete points for the multi-dimensional stochastic parameters.The time-histories of stochastic dynamic vibrations of the TBSS with systematically uncertain structural parameters were calculated accurately and efficiently by employing the probability density evolution method(PDEM).The model-predicted results were consistent with those by the Monte Carlo simulation method.A sensitivity study was performed to assess the relative importance of those uncertain structural parameters,based on which a case study was presented to explore the stochastic probability evolution mechanism of such train-ballasted track-subgrade system. 展开更多
关键词 coupled train-ballast-subgrade system structural parameter uncertainty stochastic dynamic analysis probability density evolution method wheel-rail interaction
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路桥过渡差异变形对400km/h高铁行车性能影响研究
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作者 李宁 周川江 +2 位作者 张红伟 胡世兴 罗强 《铁道工程学报》 2025年第8期15-20,共6页
研究目的:高速铁路过渡段是实现线路高平顺性的重要组成部分,已有的过渡段相关研究多针对时速350 km及以下车速展开。为了探究路桥过渡段沉降变形对400 km/h及以上高速列车行车性能的影响规律,以及现行过渡段设计标准在更高速度下的适... 研究目的:高速铁路过渡段是实现线路高平顺性的重要组成部分,已有的过渡段相关研究多针对时速350 km及以下车速展开。为了探究路桥过渡段沉降变形对400 km/h及以上高速列车行车性能的影响规律,以及现行过渡段设计标准在更高速度下的适用性问题,建立CR400BF动车组模型和长度20 m的过渡段模型,构建车辆-轨道-路基过渡段耦合动力学模型,开展不同沉降变形及不同车速下的动力学仿真分析。研究结论:(1)时速400 km条件下,过渡段轨面折角和差异沉降是影响列车行车性能的关键因素;(2)总体上,车体竖向加速度、轮轨垂向力及轮重减载率随轨面折角及差异沉降的增大呈线性规律增加,列车运行的安全性及舒适性受过渡段沉降变形的显著影响;相同轨面折角条件下,20m长度内的沉降对列车运行的舒适性影响更大,而5 m长度内的沉降对列车运行的安全性影响更大;(3)过渡段在1‰极限折角条件或5 mm极限差异沉降条件下,计算车速由350 km/h提升450 km/h时,车辆动力响应随着车速的增大而增加,均满足限值要求,现行过渡段设计标准在400 km/h及450 km/h条件下仍具有适用性;(4)本文研究可为时速400 km及以上高速列车行车性能研究以及路桥过渡段设计标准研究提供参考与借鉴。 展开更多
关键词 高速列 时速400km 桥过渡段 车-轨-路耦合 性能
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