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Impact of Ballast Fouling on Rail Tracks

机译:镇流器污垢对铁路轨道的影响

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摘要

Ballast fouling is understood as major cause of track deterioration in many countries over the world. It decreases the drainage and load bearing capacity of the ballast layer. A series of large scale hydraulic conductivity tests were conducted with different proportions of fouling to access the drainage capacity of the track. A numerical analysis was conducted using SEEP/W to quantify the drainage capacity of ballast under different degrees of fouling. Subsequently, track drainage classification in relation to the degree of fouling, which is a very useful tool for practical engineers, is presented in this paper. The analysis showed that both the location and extent of fouling played an important role when assessing the overall drainage capacity of track. In order to establish the relationship between the extent of fouling and the associated strength-deformation properties, a series of large scale monotonic triaxial tests were carried out for different levels of fouling for three different confining pressures. Based on the laboratory findings, a novel empirical relationship between the peak deviator stress and VCI has been proposed to assist the practitioner in their preliminary track condition assessment. By considering drainage and strength aspects, a critical level of fouling to assist in track maintenance planning has been considered.
机译:镇流器污垢被理解为世界上许多国家轨道恶化的主要原因。它降低了镇流器层的排水和承载能力。采用不同比例的污垢进行了一系列大规模的液压导电性试验,以进入轨道的排水能力。使用SEEP / W进行数值分析来量化不同污垢程度下镇流器的排水能力。随后,本文介绍了与污垢程度相关的排水分类,这是实用工程师的一个非常有用的工具。分析表明,在评估轨道的整体排水能力时,污垢的位置和程度都发挥了重要作用。为了建立污垢程度与相关的强度变形性能之间的关系,对三种不同的限制压力进行了不同水平的污垢进行了一系列大规模的单调三轴试验。基于实验室发现,已提出了峰值偏差应力和VCI之间的新型经验关系,以协助从业者初步轨道条件评估。通过考虑排水和强度方面,已经考虑了临界污染水平,以协助跟踪维护计划。

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