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Transition zones to railway bridges: Track measurements and numerical modelling

机译:过渡到铁路桥梁的区域:轨道测量和数值模拟

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Railway tracks degrade faster at transition zones to railway bridges. In modern lines, backfills with bound and unbound granular geomaterials have been used to minimize this problem. To provide insight into the behaviour of the train-track system and to fill the gap between numerical and experimental studies, the authors carried out extensive field measurements. These were then used to validate a FEM model that considers the relevant track components, earthworks and bridge; accounts for the train-track interaction using contact elements; and is very accurate in reproducing the measurements. Results showed that the backfill design fulfils its purpose in that it provides a stiffness transition from the embankment to the bridge. The dynamic component of the train-track interaction remained low. The performance of the model makes it a very useful tool to further study the railway track at critical locations, such as transition zones.
机译:在过渡到铁路桥梁的过渡区域,铁轨的退化速度更快。在现代生产线中,已使用结合了和未结合的颗粒状土工材料的回填材料来最大程度地减少了此问题。为了深入了解火车轨道系统的行为并填补数值研究与实验研究之间的空白,作者进行了广泛的现场测量。然后将其用于验证考虑了相关轨道组件,土方工程和桥梁的有限元模型;使用接触元素说明火车与火车的互动;并且在复制测量值时非常准确。结果表明,回填设计达到了其目的,因为它提供了从路堤到桥梁的刚度过渡。火车—轨道相互作用的动态部分仍然很低。该模型的性能使其成为进一步研究关键位置(例如过渡带)的铁路轨道的非常有用的工具。

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