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Analysis of Bridge Transition Zones in Railways Considering the Moisture Condition of the Ballast and Subballast

机译:考虑镇流器和子镇流器水分条件的铁路桥梁过渡带分析

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摘要

Transition zones in railway tracks are the locations with considerable changes in vertical support structures, e.g., near bridges. Due to possible water flow constrictions in transition zone structures, there is frequently an increased moisture level in the ballast/subballast layers, which is a potential source of track degradation. This paper presents results of the moisture condition measured in three transition zones using ground penetrating radar, where the ballast/subballast are analyzed. The relationship between the moisture condition and track degradation in the transition zones is studied by comparing it to the longitudinal track level that is measured by the track inspection coaches. A strong connection is found between the high moisture condition and track degradation in the transition zones. The dynamic behavior of the transition zones with high moisture condition is analyzed using the Finite Element method. Differential stiffness and settlement are taken into consideration in the transition zone model, which is also coupled with a vehicle. The ballast/subballast layers are modelled as solid elements. Increased moisture conditions are considered as a reduction of elastic modulus, according to laboratory findings. Results show that high moisture leads to an increase of dynamic wheel loads in the transition zone, which explains the connection and confirms that the high moisture condition is a source of transition zone problems
机译:铁路轨道的过渡区是垂直支撑结构(例如桥梁附近)发生较大变化的位置。由于过渡区结构中可能存在的水流收缩,压载物/子压载物层中的水分含量经常增加,这可能是造成轨道退化的潜在原因。本文介绍了使用地面穿透雷达在三个过渡带中测量的湿度条件的结果,其中分析了镇流器/子镇流器。通过将过渡区的湿度条件与轨道退化之间的关系与轨道检验教练测量的纵向轨道水平进行比较,研究了这种关系。在高湿度条件和过渡区的径迹退化之间发现了牢固的联系。使用有限元方法分析了高湿度条件下过渡区的动态行为。在过渡区域模型中考虑了刚性差和沉降,该模型也与车辆耦合。镇流器/子镇流器层被建模为实体元素。根据实验室发现,增加的水分条件被认为是弹性模量的降低。结果表明,高湿度会导致过渡区中车轮动态载荷的增加,这说明了这种联系,并确认高湿度条件是过渡区问题的根源

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