Calculation of current flow in grounding systems of substations and of HV line towers, in line shield wires and cable sheaths during earth faults

F. Gatta, F. Iliceto
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引用次数: 5

Abstract

The paper presents a method and a numerical calculation program of the repartition of the earth-fault currents in the grounding systems of substations and of the HV line towers, as well as of the currents which flow in the shield wires of the overhead lines and/or in the sheaths and armourings of underground cahles. The program may be applied also to very extended networks for single-phase-to-ground (1-Φ-to-Gr) and phase-to-phase-to-ground (Φ-Φ-to-Gr) faults at any point. The program is based on the simulations of the earth resistances of the HV line towers by means of a transversal conductance uniformly distributed between the shield wires and earth, and which is assumed to be variable from stretch to stretch according to soil resistivity. Models are derived which are aimed at simulating the single and double-circuit overhead lines provided with shield wires, as well as the underground cables. These models consist in a single three-pole or four-pole equivalent circuit. The validity of the program is verified by comparison with the calculations carried out by the Electromagnetic Transients Program (EMTP). Mention is made of a study carried out for the Turkish 420/150-kV network. Some measures presented are aimed at reducing the currents which flow in the shield wires of the lines outgoing from the power plants/substations following faults nearby.
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接地故障时变电站接地系统、高压线路塔、线路屏蔽线和电缆护套内电流的计算
本文提出了变电站接地系统和高压线路塔接地系统中接地故障电流的重新划分方法和数值计算程序,以及架空线路屏蔽线和地下电缆护套和铠装层中接地故障电流的重新划分方法。该程序也可以应用于非常广泛的单相对地(1-Φ-to-Gr)和相对相对地(Φ-Φ-to-Gr)故障的网络。该程序基于高压线路塔的接地电阻的模拟,采用屏蔽线与接地之间均匀分布的横向电导,并根据土壤电阻率的不同,假设横向电导随拉伸而变化。推导了带屏蔽线的单回、双回架空线以及地下电缆的仿真模型。这些模型包括一个单一的三极或四极等效电路。通过与电磁瞬变程序(EMTP)计算结果的比较,验证了该程序的有效性。提到了为土耳其420/150千伏电网进行的一项研究。提出了一些措施,旨在减少电厂/变电站出线故障后屏蔽线中的电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
European Transactions on Electrical Power
European Transactions on Electrical Power 工程技术-工程:电子与电气
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审稿时长
5.4 months
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