首页|影响地铁车辆段杂散电流分布及其对临近埋地钢质油气管道干扰的关键因素

影响地铁车辆段杂散电流分布及其对临近埋地钢质油气管道干扰的关键因素

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为了系统性地明晰影响地铁车辆段杂散电流分布及其对临近埋地管道干扰的关键因素,选取国内某地铁车辆段及其临近的埋地管道为研究对象,采用GPS同步测量的方式监测三种工况下车辆段轨道、管道的电位和电流参数,对比分析了影响车辆段杂散电流分布和管道干扰的主要因素,同时介绍了相应的代表性优化改进措施.结果表明:自动消弧装置反向导通、二极管支路和库内轨道接地方式是影响车辆段内杂散电流分布的三个主要因素,综合考虑三种因素才能实现对车辆段杂散电流干扰的有效缓解.
Key Factors Affecting Stray Current Distribution in Metro Depot and Its Interference with Adjacent Buried Oil & Gas Steel Pipelines
In order to systematically clarify the key factors affecting the stray current distribution in metro depots and the interference with adjacent buried pipelines,a domestic metro depot and its adjacent buried pipeline were selected as research objects.The potential and current parameters of the track and the pipeline in the depot under three different working conditions were monitored by GPS synchronous measurement.The main factors affecting the distribution of stray current in metro depot and pipeline interference were compared and analyzed,and the corresponding representative optimization and improvement measures were introduced.The results show that reverse conduction of automatic arc suppression device,diode branch circuit and track grounding method inside depot are the key factors affecting stray current distribution in the depot significantly,and comprehensive consideration of three factors can achieve effective mitigation of stray current in metro depot.

metro depotstray currentinterferencekey factorburied oil & gas pipeline

吴广春、于洋、王修云、赵芸黎

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安科工程技术研究院(北京)有限公司,北京 102200

国家管网集团联合管道有限责任公司西部分公司乌鲁木齐分公司,乌鲁木齐 830000

北京科技大学,北京 100083

地铁车辆段 杂散电流 干扰 关键因素 埋地油气管道

2024

腐蚀与防护
上海市腐蚀科学技术学会 上海材料研究所

腐蚀与防护

CSTPCD北大核心
影响因子:0.462
ISSN:1005-748X
年,卷(期):2024.45(5)
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