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Calculation of Interference Voltage on the Nearby Underground Metal Pipeline due to the Grounding Fault on Overhead Transmission Lines

机译:架空输电线路接地故障对附近地下金属管道干扰电压的计算

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Electromagnetic interference on the underground metal pipelines in parallel with the faulted power transmission lines includes two parts: inductive and resistive coupling. Based on the multiconductor transmission line model consisting of overhead power lines and underground pipeline, the tower grounding resistance is, respectively, modeled by the lumped-parameter processing and distributed-parameter equivalent method. Then, the formulas of voltages and currents along the transmission lines are derived combined with the constraints of voltages and currents at the transmission line's ends and the location of grounding fault. Regarding the earth-fault currents along the towers as the excitations, the method of moment is used to investigate the resistive coupling voltage on the nearby underground metal pipeline. Compared with the results of commercial software CDEGS employing the electromagnetic field analysis, the proposed method is proved to be correct and effective. The simulations also show that the results by the lumped-parameter processing method are more accurate than those by the distributed-parameter equivalent method during the tower grounding resistance modeling. Finally, the proposed method is applied to investigate the influence of parallelism length, separation distance, soil resistivity, tower grounding resistance, insulation coating resistivity, grounding fault location, and fault currents from the substations on the pipeline's coating stress voltage.
机译:与有故障的输电线路平行的地下金属管道上的电磁干扰包括两部分:电感耦合和电阻耦合。基于由架空电力线和地下管道组成的多导体传输线模型,分别通过集总参数处理和分布参数等效方法对塔架接地电阻进行建模。然后,结合输电线路两端的电压和电流约束以及接地故障的位置,推导了输电线路上的电压和电流公式。对于沿塔的接地故障电流作为激励,采用矩量法研究附近地下金属管道上的电阻耦合电压。与商业软件CDEGS的电磁场分析结果相比,该方法是正确有效的。仿真还表明,在塔架接地电阻建模过程中,集总参数处理方法的结果比分布参数等效方法的结果更准确。最后,将所提出的方法用于研究平行长度,分离距离,土壤电阻率,塔架接地电阻,绝缘涂层电阻率,接地故障位置以及变电站的故障电流对管道的涂层应力电压的影响。

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