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The role of ballast fouling characteristics on the drainage capacity of rail substructure

机译:压载物结垢特性对铁路下部结构排水能力的影响

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摘要

The ballast layer is designed to be free draining, but when the voids of the granular medium are wholly or partially filled due to the intrusion of fine particles, the ballast is considered to be “fouled”. In order to ensure acceptable track performance, it is necessary to maintain good drainage within the ballast layer. This paper critically examines the current methods commonly used for evaluating the degree of ballast fouling and, due to their limitations, a new parameter, Void Contaminant Index is introduced. A series of large-scale constant head hydraulic conductivity tests were conducted with different levels of fouling to establish the relationship between the void contamination index and the associated hydraulic conductivity. Subsequently, a numerical analysis was executed to simulate more realistic two-dimensional flow under actual track geometry capturing the drainage capacity of ballast in relation to the void contamination index. In the context of observed test data, the drainage condition of the track could be classified into different categories together with a classification chart capturing the degree of fouling. The contents of this paper have already been considered in track maintenance schemes in the States of Queensland and New South Wales
机译:压载层被设计成可自由排放,但是当颗粒介质的空隙由于细小颗粒的侵入而被全部或部分填充时,则认为压载物是“结垢的”。为了确保可接受的轨道性能,有必要在压载层内保持良好的排水性。本文对目前用于评估压舱物结垢程度的常用方法进行了严格审查,并由于其局限性,引入了一个新参数“空隙污染指数”。在不同的结垢水平下进行了一系列大型恒压头水力传导率测试,以建立空隙污染指数与相关水力传导率之间的关系。随后,进行了数值分析以模拟在实际轨道几何形状下更实际的二维流动,从而捕获了压载物的排水能力与空隙污染指数的关系。在观察到的测试数据的背景下,可以将轨道的排水条件与捕获污垢程度的分类表一起分类为不同的类别。本文的内容已经在昆士兰州和新南威尔士州的轨道维护计划中进行了考虑

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