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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Energy absorption capacity of a 500 kV surge arrester for direct and multiple lightning strokes
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Energy absorption capacity of a 500 kV surge arrester for direct and multiple lightning strokes

机译:500 kV避雷器在直接和多次雷击中的能量吸收能力

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摘要

Damage to 500 kV surge arresters occurred due to direct and multiple lightning strokes. The present paper initially analyzes the mechanism of how the surge arresters were damaged based on the accident investigative results and evaluates the energy absorption capacity of existing surge arresters by analyzing the energy absorbed when the surge arresters were damaged. Consequently, the damage was confirmed as attributable by the crack of ZnO elements due to the thermal stress sustained when absorbing the energy of direct and multiple lightning strokes. The damage energy was estimated at about 5.4 MJ. Subsequently, based on the lightning observation data according to the lightning location system and the lightning outage rate of transmission lines, the standard lightning-stroke conditions were determined, the required energy absorption capacity of the surge arresters was analyzed and determined to be less than 5.3 MJ. Although the energy absorbed in the above damage cases exceeds this required energy absorption capacity, it is still considered within the variable range of lightning events. Consequently, existing surge arresters have the required energy absorption capacity and the cases involving damage to surge arresters are considered extremely rare.
机译:直接和多次雷击损坏了500 kV电涌放电器。本文首先根据事故调查结果分析了电涌放电器的损坏机理,并通过分析电涌放电器损坏时吸收的能量来评估现有电涌放电器的能量吸收能力。因此,证实了损伤是由于吸收直接雷击和多次雷击的能量时承受的热应力导致的ZnO元素的裂纹。估计破坏能量约为5.4 MJ。随后,根据根据雷电定位系统的雷电观测数据和输电线路的雷电中断率,确定标准的雷击条件,对电涌放电器的要求能量吸收能力进行了分析,并确定其小于5.3。 MJ。尽管在上述损坏情况下吸收的能量超过了所需的能量吸收能力,但仍认为它在雷电事件的可变范围内。因此,现有的电涌放电器具有所需的能量吸收能力,并且涉及电涌放电器损坏的情况被认为极为罕见。

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