Implementation of Second Earthwire on L6 400 kV Transmission Line

Padoan Federico, Manu A. Haddad, M. Albano, S. Robson, Guo Dongsheng, Christopher Land, Neil Loftus
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Abstract

The Earthwire is an important device to shield the transmission line from lightnings and to exchange information among the substations. OPGWs (Optical ground wires) are widely used for these purposes. Technical operations on the line impose a temporary implementation of a second earthwire between the two circuits.In this paper a study is undertook to understand the possible variations in the electric and magnetic field distribution and the induced currents due to the installation in a trial site of the second OPGW. In order to ensure reliabilty to the simulation, a comparison of three different calculation techniques has been conducted, and a boundary element Method has been then implemented in COMSOL Multiphysics to study a 3D configuration of the line and quantity the electric field around the pylons.To estimate the induced currents, the software ATP-EMTP has been used simulating the conditions with and without the second earthwire.Good agreement has been reached between the different numerical techniques for the field calculation, and a high value of induced current has been found on the ground wires in the case of the implementation of a second one.A measurement system has been built in Cardiff University to measure in June and August 2022 the induced current values and validate the numerical models.
L6 400kv输电线路二次接地线的实施
接地线是保护输电线路免受雷击和变电站间信息交换的重要装置。OPGWs(光地线)被广泛用于这些目的。线路上的技术操作要求在两个电路之间临时安装第二条接地线。本文对第二座OPGW试验场的电场、磁场分布和感应电流可能发生的变化进行了研究。为了保证仿真的可靠性,对三种不同的计算方法进行了比较,然后在COMSOL Multiphysics中实现了边界元法,研究了线的三维结构和塔周围电场的数量。为了估计感应电流,用ATP-EMTP软件模拟了有和没有第二根接地线的情况。不同的数值计算方法对电场的计算结果有很好的一致性,并且在采用第二种数值计算方法的情况下,发现接地线上的感应电流值很高。在卡迪夫大学建立了一个测量系统,用于测量2022年6月和8月的感应电流值并验证数值模型。
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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