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The effect of differential settlements on the dynamic response of the train-track system: A numerical study

机译:差异沉降对列车轨道系统动力响应的影响:数值研究

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Railway tracks on earthworks with poor geotechnical performance may undergo important differential settlements that amplify the dynamic response of the train-track system, inducing rapid track degradation, lower passenger comfort and higher derailment risk. Because the track substructure is normally inaccessible, these problems are not detected early, are very complex to solve and disrupt normal train operation. To study the influence of settlement profiles on the train-track system, the authors performed a parametric study comprising non-linear dynamic analyses using a FEM model to simulate different scenarios. Some profiles caused important amplifications in the train-track system that were associated to rapid track degradation and derailment risk, while others were associated to lower passenger comfort. Hanging sleepers were found to be strongly associated to critical situations of track degradation. The results were integrated and used in a framework to establish performance indicators that can be useful for planning railway track maintenance works.
机译:岩土工程性能较差的土方工程中的铁路轨道可能会经历重要的差异沉降,这会加剧列车轨道系统的动态响应,导致轨道快速退化,乘客舒适度降低和出轨风险增加。由于通常无法接近轨道下部结构,因此无法及早发现这些问题,解决并破坏正常的火车运行非常复杂。为了研究沉降轮廓对列车轨道系统的影响,作者进行了参数研究,包括使用FEM模型模拟不同场景的非线性动态分析。一些轮廓在火车轨道系统中引起重要的放大,这与快速的轨道退化和脱轨风险有关,而其他的则与较低的乘客舒适度有关。发现悬挂的轨枕与轨道退化的关键情况密切相关。将结果整合并用于框架中,以建立绩效指标,这些指标可用于规划铁路轨道维护工作。

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