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INVESTIGATION AND MITIGATION OF DIFFERENTIAL MOVEMENT AT RAILWAY TRANSITIONS FOR US HIGH SPEED PASSENGER RAIL AND JOINT PASSENGER/FREIGHT CORRIDORS

机译:美国高速乘客铁路和联合乘客/货运走廊铁路过渡差动运动的调查与减轻

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As with most highway bridges, railway transitions experience differential movements due to differences in track system stiffness, track damping characteristics, foundation type, ballast settlement from fouling and/or degradation, as well as fill and subgrade settlement. This differential movement is especially problematic for high speed rail infrastructure as the "bump" at the transition is accentuated at high speeds. Identification of different factors contributing towards this differential movement, as well as development of design and maintenance strategies to mitigate the problem is imperative for the safe and economical operation of both freight and passenger rail networks. This paper presents the research framework and preliminary findings from a recently initiated research effort at the University of Illinois at Urbana-Champaign. Aimed at developing design and repair techniques to mitigate differential movement at railway transitions, this research project involves instrumentation, performance monitoring and numerical modeling of new and existing track transitions.
机译:与大多数公路桥梁一样,由于轨道系统刚度,轨道阻尼特性,基础类型,牙线沉降,污垢和/或降解的差异,以及填充和路基沉降,铁路过渡导致差动运动。这种差动运动对于高速轨基础设施特别有问题,因为过渡时的“凸块”以高速突出。鉴定对这种微分运动有所贡献的不同因素,以及减轻问题的设计和维护策略的发展是运费和乘客铁路网络的安全和经济运行所必需的。本文介绍了伊利诺伊大学最近发起的研究努力的研究框架和初步调查结果在Urbana-Champaign。旨在开发设计和修复技术,以减轻铁路转换的微分运动,这项研究项目涉及新的和现有的轨道过渡的仪器,性能监测和数值建模。

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