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Analysis of discharge energy on surge arrester configurations in 132 kV double circuit transmission lines

机译:132 kV双电路输电线路电涌避雷器配置上的放电能量分析

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Surge arrester has been proven to be the most effective application to provide optimum lightning protection for the transmission line. Thus, many works on optimizing lightning protection for transmission line have been conducted since the past. However, works on minimizing double circuit outages and surge arrester physical properties during transient overvoltages are less likely to be found. Therefore, in this work, several surge arrester configurations installed on a 132 kV double circuit transmission line were modelled using EMTP-RV to investigate their capability to withstand current and energy discharged by lightning strokes during back flashover phenomena. These configurations were then compared to determine the most effective protection design based on the actual tripping pattern recorded by the lightning detection system (LDS) in Malaysia. The selection was made by considering arresters' discharge energy due to variation in tower footing resistance, current magnitude, power frequency voltage, lightning tail time and front time, number of towers and span length. It was found that double circuit transmission line tripping can be completely eliminated by installing surge arresters at each phase conductor of one circuit. The selected arresters configuration provides sufficient lightning protection to the transmission line and complies with the discharge energy capability requirement specified by the utility company in Malaysia, of 5.1 kJ/kV for maximum continuous operating voltage (MCOV). (C) 2019 Elsevier Ltd. All rights reserved.
机译:避雷器已被证明是最有效的应用,为输电线路提供最佳的防雷。因此,自过去以来已经进行了许多关于优化传输线的雷电保护的作品。但是,在最小化双电路中断和瞬态过电压期间的浪涌避雷器物理性质的作用不太可能找到。因此,在这项工作中,使用EMTP-RV安装了安装在132kV双电路传输线上的几个浪涌避雷器配置,以研究其在闪蒸闪蒸现象期间耐受雷击排放的电流和能量的能力。然后将这些配置进行比较,以确定基于马来西亚雷电检测系统(LDS)记录的实际跳闸模式的最有效的保护设计。通过考虑避雷器的放电,由于塔基脚踏性,电流幅度,功率电压,闪电尾部时间和前时间,塔数和跨度长度的变化,通过考虑避雷器的放电能量来进行选择。发现可以通过在一个电路的每个相导体上安装浪涌避雷器来完全消除双电路传输线跳闸。所选的避雷器配置为传输线提供足够的防雷,并符合Malaysia的公用事业公司指定的放电能源能力要求5.1 kJ / kV,用于最大连续工作电压(MCOV)。 (c)2019年elestvier有限公司保留所有权利。

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