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A study on the dynamic train-track interaction over cut-fill transitions on buried culverts

机译:地下涵洞填土过渡过程中列车-轨道动力相互作用的研究

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摘要

Sudden changes in the structural and geotechnical properties of railway tracks along its course are normally associated with subgrade stiffness transitions, differential settlements and, ultimately, hanging sleepers that reduce the performance of the railway system. This paper aims at analysing and quantifying the impact of such situations, particularly cut-fill transitions combined with the presence of culverts, on the train-track system response. A cut-fill transition on a buried culvert is used as case study for which track geometry and stiffness evaluation data were available. A numerical model, considering the coupled train-track interaction, was developed using a 3D FEM dynamic analysis tool that was further improved here with a mixed implicit-explicit time integration scheme. The results suggest that the faster degradation rates typically found at similar locations are mostly related to the development of early permanent deformations in the subgrade layers, rather than to sudden stiffness transitions, which then aggravate the problem by causing important dynamic amplifications in the train-track interaction. Therefore, numerical approaches similar to the one presented herein can be valuable tools for designers and railway infrastructure managers in order to anticipate and mitigate such negative effects at these locations. (C) 2017 Elsevier Ltd. All rights reserved.
机译:铁路沿其路线的结构和岩土特性的突然变化通常与路基刚度过渡,差异沉降以及最终导致降低铁路系统性能的轨枕有关。本文旨在分析和量化这种情况对火车轨道系统响应的影响,尤其是切入过渡与涵洞的结合。案例研究使用了地下涵洞的填土过渡,可获​​取轨道几何形状和刚度评估数据。考虑到耦合的列车-轨道相互作用,使用3D FEM动态分析工具开发了一个数值模型,该模型在此处通过混合隐式-显式时间积分方案进行了进一步改进。结果表明,通常在相似位置发现的更快的降解速率主要与路基层中早期永久变形的发展有关,而不是与突然的刚度转变有关,后者随后通过在火车轨道上引起重要的动态放大而加剧了问题。相互作用。因此,与本文介绍的方法类似的数值方法对于设计人员和铁路基础设施管理人员来说可能是有价值的工具,以便预期并减轻这些位置的此类负面影响。 (C)2017 Elsevier Ltd.保留所有权利。

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