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Line Arresters Application in Lightning Protection of High Voltage Substations with Non-standard Configuration

机译:线路避雷器在非标配置高压变电站防雷中的应用

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摘要

In this paper, application of gapless transmission line arresters (TLAs) in substation lightning protection is analyzed. Deterministic calculations in accordance with IEC 62305 are performed. Substations with non-standard configuration equipped with Gas Insulated Switchgear (GIS), long cables, and a direct cable connecting GIS and power transformer are considered. It is concluded that 220- and 400-kV substations lightning performance can be significantly improved by using TLAs at only one or two overhead line towers in front of the substation. In some cases, TLAs provide better lightning protection of power transformer than surge arresters installed in GIS. Positive effects of TLAs application are noticed both in the case of back-flashovers and in the case of shielding failures. TLAs energy stress increases with the decrease of the system rated voltage. Maximum estimated values in the analyzed substations are below 2.5 and 0.5 kJ/kVr for TLAs installed in 220- and 400-kV systems, respectively.
机译:本文分析了无间隙传输线避雷器(TLA)在变电站防雷中的应用。执行符合IEC 62305的确定性计算。考虑采用非标准配置的变电站,该变电站配备有气体绝缘开关设备(GIS),长电缆以及连接GIS和电力变压器的直接电缆。结论是,仅在变电站前面的一或两个架空线塔上使用TLA,可以显着提高220 kV和400 kV变电站的避雷性能。在某些情况下,TLA比GIS中安装的避雷器提供了更好的电源变压器防雷保护。在反向闪络和屏蔽故障的情况下,TLA的应用都会产生积极影响。 TLA的能量应力随着系统额定电压的降低而增加。对于安装在220 kV和400 kV系统中的TLA,在分析的变电站中,最大估计值分别低于2.5和0.5 kJ / kVr。

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