Simulation of the contact wire wear evolution in high speed overhead contact lines

S. Gregori, J. Gil, M. Tur, A. Pedrosa, Fco. Javier Fuenmayor
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Abstract

Overhead contact line or catenary is the structure composed of support elements and wires responsible for the power supply of the locomotive through sliding contact with the pantograph. This contact causes wear not only on the pantograph contact strips but also in the contact wire, which produces a reduction on its effective section and eventually its replacement, resulting in the stop of the railway traffic with its associate economical and operational drawbacks. For this reason, it is important for catenary designers to count with appropriate tools able to predict the contact wire wear behaviour for extending the service life of the system. This work proposes a strategy to simulate the long-term contact wire wear evolution considering the mutual influence between the dynamic behaviour and wear of the system. The method is based on two pillars: the efficient simulation of the catenary-pantograph dynamic interaction [1] and a heuristic wear model [2] which considers mechanical wear due to friction and electrical wear produced by Joule effect and electric arcs. With the proposed simulation tool, we analyse the effect on the long-term contact wire height irregularity caused by wear of different parameters such as the train speed, the pantograph uplift force or the presence of installation errors in the catenary.
高速架空接触线接触丝磨损演化模拟
架空接触线或接触网是由支撑元件和导线组成的结构,通过与受电弓的滑动接触为机车供电。这种接触不仅会导致受电弓接触条的磨损,还会导致接触线的磨损,从而减少其有效截面,最终导致其更换,从而导致铁路交通停止,并带来相关的经济和操作缺陷。因此,对于接触网设计者来说,使用合适的工具来预测接触线的磨损行为,以延长系统的使用寿命是非常重要的。本工作提出了一种考虑系统动态行为和磨损之间相互影响的长期接触丝磨损演变模拟策略。该方法基于两个支柱:对接触网-受电弓动态相互作用的有效模拟[1]和启发式磨损模型[2],该模型考虑了由于摩擦引起的机械磨损和由焦耳效应和电弧产生的电磨损。利用所提出的仿真工具,分析了列车速度、受电弓抬升力或接触网存在安装误差等不同参数对接触网长期接触线高度不均匀的影响。
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