布达佩斯1号线轨道几何参数统计分析

V. Jover, S. Fischer
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引用次数: 6

摘要

本文对匈牙利首都布达佩斯1号线有轨电车轨道的上部结构进行了研究。自从有轨电车首次出现以来,已经取得了一些技术进步,以尽可能有效地满足乘客的需求。有轨电车轨道上层建筑系统可分为几种类型,在每个工程中采用不同的实施方式。此外,这些上层建筑类型有不同的退化时间(几何和结构),这取决于几个因素。如今,目视检查已不足以监察轨道的状况和恶化情况,因此有必要考虑使用安装在车辆上的传感器进行检查。采用适当的方法,可以对测量数据进行建模,并且可以通过足够长期的研究(即生命周期成本,整个生命周期等)确定上层建筑和结构元件的生命周期。首先,作者回顾了相关的国际文献,然后根据2019年至2021年连续三年的测量结果,对所调查的有轨电车线路上五个路段相关的上层结构进行了轨道几何参数分析。分析主要包括对测量参数和计算参数的统计检验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Statistical Analysis of Track Geometry Parameters on Tramway Line No. 1 in Budapest
The article examines the superstructures of the tramway tracks of tramway line No. 1 in Budapest (the capital of Hungary). Since the first appearance of tramways, several technological advancements have been made to serve passenger needs as efficiently as possible. Several types of tramway track superstructure systems can be differentiated, which are implemented differently in each project. Furthermore, these superstructure types have different degradation times (both geometrical and structural), which depend on several factors. Nowadays, visual inspections are no longer considered sufficient in monitoring the tracks’ condition and deterioration, thus it is necessary to consider examinations carried out using the sensors mounted on the vehicles. Adopting appropriate methods, the measured data can be modeled and the life cycle of superstructures and structural elements can be determined as a result of sufficiently long-term studies (i.e., life cycle costs, the whole lifetime, etc.). First, the authors present a review of the relevant international literature, after that they conduct analysis of track geometry parameters of the superstructures related to five sections on the investigated tramway line based on the results of the measurements performed for three consecutive years between 2019 and 2021. The analyses consist primarily in statistical examination of the measured and calculated parameters.
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