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Electrical performance of 330-kV composite insulators with different shed configurations under icing conditions

机译:结冰条件下具有不同棚型结构的330 kV复合绝缘子的电气性能

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Composite insulators have been widely used in the electric power utilities worldwide because of their excellent anti-contamination performance. However, because of their compact shed configurations, the electrical performance of fully ice-bridged composite insulators is inferior to that of the porcelain and glass insulators at the same voltage level. As shown in previous studies, shed configuration influences the electrical performance of iced composite insulators. In order to improve the electrical performance of composite insulators under icing conditions, five types of 330-kV composite insulators with different number of big sheds were used to compare their V50 withstand voltage performances. The experiments were carried out in the multifunction climate chamber in Chongqing University. The test results show that the V50 withstand voltage can be increased by adding big sheds. To obtain the best performance, the shed spacing of big sheds should be long enough to avoid icicle bridging. The test results also show that there is no guarantee that the electrical performance of composite insulators can be increased when the corona rings are present under heavy icing condition. When corona rings are needed, their dimension and that of the shed configuration should be designed with care.
机译:复合绝缘子因其出色的抗污染性能而被广泛用于全球的电力公司。但是,由于其紧凑的棚形结构,在相同的电压水平下,全冰桥式复合绝缘子的电气性能不及瓷绝缘子和玻璃绝缘子。如先前的研究所示,棚结构会影响冰复合绝缘子的电气性能。为了改善结冰条件下的复合绝缘子的电气性能,使用了五种类型的330-kV复合绝缘子,它们具有不同的大棚数,以比较其V50耐压性能。实验在重庆大学多功能气候室进行。测试结果表明,通过增加大电流棚可以提高V50的耐压。为了获得最佳性能,大棚的棚间距应足够长,以避免冰柱桥接。测试结果还表明,当在严重结冰条件下存在电晕环时,无法保证可以提高复合绝缘子的电气性能。当需要电晕环时,应谨慎设计其尺寸和脱落结构的尺寸。

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