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A conductor arrangement that overcomes the effective length issue in transmission line grounding

机译:克服了传输线接地中有效长度问题的导体布置

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The reliability and availability of the electric power transmission system is severely influenced by lightning. In Brazil, roughly 65% of the overhead transmission lines outages are due to lightning, whereas the backflashover is the predominant phenomenon compared to shielding failure. Hence, obtaining a low value for the transmission line grounding impedance is an important issue when dealing with transmission lines backflashover performance. Usually, for high resistivity soils, increasing the grounding grid dimensions does not lead to low impedance due to the effective length issue. In this work, a special arrangement of ground electrodes is proposed in order to overcome the effective length problem in high resistivity soil. The transient voltage response of this low impedance ground arrangement is evaluated numerically using parametric modeling approach. Comparisons of numerical simulations results and measurements from a reduced model study are presented for validation purpose. Additionally, the quality of the results obtained using the reduced model elects it as a valuable tool for studies of electromagnetic transients involving interaction of lightning and grounding grids. (C) 2017 Elsevier B.V. All rights reserved.
机译:电力传输系统的可靠性和可用性受到雷电的严重影响。在巴西,大约65%的架空传输线中断是由雷电引起的,而与屏蔽故障相比,回闪是主要现象。因此,在处理传输线回闪性能时,获得较低的传输线接地阻抗值是重要的问题。通常,对于高电阻率的土壤,由于有效长度问题,增加接地网的尺寸不会导致低阻抗。在这项工作中,提出了一种特殊的接地电极布置,以克服高电阻率土壤中的有效长度问题。使用参数化建模方法对这种低阻抗接地装置的瞬态电压响应进行了数值评估。数值模拟结果与简化模型研究的测量结果进行了比较,以进行验证。此外,使用简化模型获得的结果的质量使其成为研究涉及闪电和接地网相互作用的电磁瞬变的有价值的工具。 (C)2017 Elsevier B.V.保留所有权利。

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