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Mitigation of the produced voltages in AC overhead power-lines/pipelines parallelism during power frequency and lightning conditions

机译:在工频和雷电条件下,减轻交流架空电力线/管道并联产生的电压

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This paper presents a theoretical simulation for a pipeline running in parallel to AC overhead power lines using the 'CONCEPT II' package. This package is based on the method of moment combined with a transmission-line model. A 1 km long, 132kV, three-phase, double-circuit transmission line, and a 2km long, 40cm diameter, 1 m high above-ground pipeline are modelled. Extra shielding wires (ESW) under the phase conductors are investigated. Produced voltages in the pipeline are computed under steady-state power frequency (50 Hz) as well as under direct and indirect lightning strikes to the power line. Different current waveforms are simulated to cover the whole range of those of the anticipated lightning. Under lightning strikes, the voltages across line insulators are computed, too. The results reveal that the ESW give many advantages; namely, (1) reducing the power-frequency electric and magnetic fields at the ground level to meet the regularity limits, (2) improving the shielding effectiveness during lightning strikes by reducing the insulator voltages, (3) mitigating the induced voltages in any metallic structure near the power lines, e.g., pipelines, and (4) using them as optical ground wires for telecommunication purposes, where the probability of lightning strikes to such ESW is much lower than that for the normally used grounding wire(s) at the tower top.
机译:本文介绍了使用“ CONCEPT II”软件包与交流架空电力线并联运行的管道的理论仿真。该程序包基于矩量法和传输线模型相结合。模拟了一条长1 km的132kV三相双回路输电线和一条长2 km的直径40cm,高1 m的地上管道。研究了相线下方的额外屏蔽线(ESW)。在稳态电源频率(50 Hz)以及对电源线的直接和间接雷击下,计算管道中产生的电压。模拟了不同的电流波形,以覆盖预期雷电的整个范围。在雷击下,线路绝缘子两端的电压也将被计算。结果表明,ESW具有许多优势。即(1)降低地面上的工频电场和磁场以满足规则性限制;(2)通过降低绝缘体电压来提高雷击时的屏蔽效率;(3)减轻任何金属中的感应电压电力线附近的结构,例如管道,以及(4)将其用作电信目的的光学接地线,其中此类ESW遭受雷击的可能性比塔架上通常使用的接地线低得多最佳。

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