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Numerical analysis of high‑speed railway slab tracks using calibrated and validated 3D time‑domain modelling
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作者 A.F.Esen O.Laghrouche +4 位作者 P.K.Woodward D.Medina‑Pineda Q.Corbisez J.Y.Shih D.P.Connolly 《Railway Engineering Science》 EI 2024年第1期36-58,共23页
Concrete slabs are widely used in modern railways to increase the inherent resilient quality of the tracks,provide safe and smooth rides,and reduce the maintenance frequency.In this paper,the elastic performance of a ... Concrete slabs are widely used in modern railways to increase the inherent resilient quality of the tracks,provide safe and smooth rides,and reduce the maintenance frequency.In this paper,the elastic performance of a novel slab trackform for high-speed railways is investigated using three-dimensional finite element modelling in Abaqus.It is then compared to the performance of a ballasted track.First,slab and ballasted track models are developed to replicate the full-scale testing of track sections.Once the models are calibrated with the experimental results,the novel slab model is developed and compared against the calibrated slab track results.The slab and ballasted track models are then extended to create linear dynamic models,considering the track geodynamics,and simulating train passages at various speeds,for which the Ledsgard documented case was used to validate the models.Trains travelling at low and high speeds are analysed to investigate the track deflections and the wave propagation in the soil,considering the issues associated with critical speeds.Various train loading methods are discussed,and the most practical approach is retained and described.Moreover,correlations are made between the geotechnical parameters of modern high-speed rail and conventional standards.It is found that considering the same ground condition,the slab track deflections are considerably smaller than those of the ballasted track at high speeds,while they show similar behaviour at low speeds. 展开更多
关键词 high-speed railways slab track New ballastless track Ballasted track Critical speeds Finite element modelling Calibration of numerical models
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Design theories and maintenance technologies of slab tracks for high-speed railways in China:a review 被引量:6
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作者 Juanjuan Ren Shijie Deng +2 位作者 Kaiyao Zhang Wei Du Qinghong Wu 《Transportation Safety and Environment》 EI 2021年第4期1-19,共19页
The durability and reliability of slab track structures are essential for the long-term safety and stable operation of high-speed railways.In order to provide a solid theoretical basis and technical reference for the ... The durability and reliability of slab track structures are essential for the long-term safety and stable operation of high-speed railways.In order to provide a solid theoretical basis and technical reference for the advancement of high-speed railway quality,this paper comprehensively discusses design theories of slab track structures,service performance evolution and maintenance technologies,and reviews the innovation happening in the industry.On top of that,the damage evolution,fatigue features and durability of slab tracks,which are highly relevant to serviceability,are summarized,and the future research trend of slab track service behaviours is pointed out.In addition,this paper summarizes the rules of establishing standards for damage maintenance,typical solutions for repairing damage and methods of evaluating the maintenance outcomes that combine field tests and numerical simulations.It also envisions a future direction where advanced testing technologies would assist the evaluation of maintenance effects. 展开更多
关键词 high-speed railway slab track design theory service performance maintenance
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Temperature-induced deformation of CRTS II slab track and its effect on track dynamical properties 被引量:9
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作者 SONG XiaoLin ZHAO ChunFa ZHU XiaoJia 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第10期1917-1924,共8页
Two finite-element models of the CRTS II slab track are presented to simulate temperature-induced deformations of the concrete track slab with no deterioration or with a deteriorated cement asphalt mortar(CAM).One mod... Two finite-element models of the CRTS II slab track are presented to simulate temperature-induced deformations of the concrete track slab with no deterioration or with a deteriorated cement asphalt mortar(CAM).One model,which considers the fully bonding interface between the slab and the CAM layer,could applied to a track that is in good condition;the other model uses cohesive zone elements to simulate the deteriorated CAM with some possible interfacial separation and slip.Utilizing both of the models,temperature-induced warp deformations of track under various temperature loads are investigated.The influence of temperature deformation on the dynamic properties of the track is analyzed based on the train-track coupled dynamics.Numerical results show that the deteriorated CAM layer can significantly increase temperature deformations of a CRTS II track slab,which would produce tiny rail irregularities.There are clear differences between the deformation shapes of the track slabs that have an inseparable mortar layer and those have a separable mortar layer.The track slab with a deteriorated mortar layer showed more open curl distortion than the track slab in good condition.The dynamical response index of the slab track is intensified to a certain level due to the temperature deformation;with an increase of the train speed,the track dynamical responses increased linearly.However,rail irregularities due to the temperature deformations are very tiny.Even if a track is exposed to extreme temperature loads and the mortar layer is deteriorated,temperature deformation can have a negligible effect on the track’s dynamical properties. 展开更多
关键词 high-speed railway temperature deformation slab track dynamical properties
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重庆南纪门长江大桥主桥总体设计 被引量:8
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作者 王帆 黎小刚 +1 位作者 赖亚平 漆勇 《桥梁建设》 EI CSCD 北大核心 2019年第1期89-94,共6页
重庆南纪门长江大桥为轨道专用桥,该桥主桥采用(34.5+180.5+480+215.5+94.5)m的高低塔双索面斜拉桥,半飘浮体系。主梁采用PK断面钢箱叠合梁,箱梁总宽23.6m,梁高3.3m。桥塔采用门形混凝土结构,北塔总高158m、南塔总高227m,基础为哑铃形... 重庆南纪门长江大桥为轨道专用桥,该桥主桥采用(34.5+180.5+480+215.5+94.5)m的高低塔双索面斜拉桥,半飘浮体系。主梁采用PK断面钢箱叠合梁,箱梁总宽23.6m,梁高3.3m。桥塔采用门形混凝土结构,北塔总高158m、南塔总高227m,基础为哑铃形承台接群桩基础。斜拉索采用1 860MPa高强平行钢丝,索塔锚固采用环向预应力,索梁锚固采用锚拉板。辅助墩及交接墩均采用板式桥墩。主梁采用悬拼施工,跨越南滨路及南滨国际段主梁化整为零分块拼装。为使桥位周边综合噪声满足环评标准,采取轨道设置钢弹簧浮置板减振道床+噪音敏感段设置全封闭声屏障+进出站车速控制在50km/h以内的减振降噪组合措施。 展开更多
关键词 高低塔斜拉桥 轨道专用桥 PK断面钢箱叠合梁 减振降噪 钢弹簧浮置板道床 声屏障
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我国高速铁路特殊地段轨道结构模式设想
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作者 岳渠德 《中国铁路》 1994年第2期10-11,29,共3页
从基建费用估算和经济效益分析着手,对我国高速铁路在诸如隧道、桥梁、城市高架铁路、车站站场及石质路堑等特殊地段宜采用板体轨道这一轨道结构模式设想进行了讨论。
关键词 高速铁路 板体轨道 结构模式
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