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土壤结构对城轨中杂散电流分布的影响分析
引用本文:周 奇,林 圣,邹全德,李昱达.土壤结构对城轨中杂散电流分布的影响分析[J].都市快轨交通,2022,35(2):10-16.
作者姓名:周 奇  林 圣  邹全德  李昱达
作者单位:西南交通大学电气工程学院,成都610031
基金项目:四川省重点研发项目;国家自然科学基金
摘    要:杂散电流分布受列车运行工况、供电区间长度、钢轨过渡电阻和土壤结构等多因素影响.研究杂散电流的影响因素是防治杂散电流的基础.为了研究土壤结构对城市轨道交通中杂散电流分布的影响,构建含多层土壤结构的杂散电流仿真模型.基于该仿真模型,分析均匀土壤、分层土壤中电阻率、土壤厚度等参数对杂散电流分布的影响.仿真结果表明,土壤结构会...

关 键 词:城市轨道交通  土壤结构  杂散电流  仿真模型

Influence of Soil Structure on Stray Current Distribution in Urban Rail Transit
ZHOU Qi,LIN Sheng,ZOU Quande,LI Yuda.Influence of Soil Structure on Stray Current Distribution in Urban Rail Transit[J].Urban Rapid Rail Transit,2022,35(2):10-16.
Authors:ZHOU Qi  LIN Sheng  ZOU Quande  LI Yuda
Institution:School of Electrical Engineering, Southwest Jiaotong University
Abstract:Harmful stray current has become a prominent problem with the rapid development of urban rail transit. The distribution of stray current is affected by several factors, such as train operating conditions, length of the power supply section, rail transition resistance, and soil structure. Studying the influencing factors of the stray current is required for preventing it. In this study, a stray current simulation model with a multi-layer soil structure is constructed to study the influence of soil structure on the distribution of stray current in urban rail transit. Based on this model, the effects of resistivity and soil thickness in uniform and layered soil on the stray current distribution are analyzed. The simulation results show that the soil structure affects the current distribution in the drainage network, auxiliary drainage, and the ground, but has little effect on the rail potential and the total stray current distribution along the line. In addition, in the layered soil structure, the less the thickness of the first layer of soil or the greater the resistivity, the less stray current flows to the earth.
Keywords:urban rail transit  soil structure  stray current  simulation model
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