The use of booster sheds to improve the performance of 800 kV multicone type insulators under heavy rain

O.B. Oliveira Filho, Jose Antonio Cardoso, Darcy Ramalho de Mello, Rogerio Magalhaes de Azevedo, S. Carvalho
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引用次数: 10

Abstract

Studies based on AC high voltage tests have been done at Cepel to investigate the performance of 800 kV busbar insulators under heavy wetting conditions. Insulators were tested as they are now used on site and also with different configurations of booster sheds. Images recorded by ultra-violet (UV) camera were used to help the investigations on the effectiveness of booster sheds. By comparing UV images of the insulator being stressed with high voltage under heavy rain with and without booster sheds, it was possible to observe how significant the reduction on the flashover formation process is when booster sheds are used. The effectiveness of booster sheds was also quantified by determining the disruptive discharge of the insulator with and without them. The results of these studies can also be considered as contribution to national and international standard technical committees to improving the standardized procedure for tests on ultra high voltage (UHV) insulators under heavy artificial rain. Subjects such as the clear definition of relevant UHV test procedure and test arrangements, including the use of UV camera, have to be taken into account.
利用升压棚提高800kv多锥型绝缘子在暴雨下的性能
在Cepel进行了基于交流高压试验的研究,以研究800kv母线绝缘子在重润湿条件下的性能。对绝缘子进行了测试,因为它们现在在现场使用,也与不同配置的助推器棚一起使用。利用紫外相机拍摄的图像,对增压剂棚的有效性进行了研究。通过对比在大雨下绝缘子在高压下受力的紫外图像,有和没有增压器棚,可以观察到使用增压器棚时对闪络形成过程的减少有多显著。通过测定有增压器棚和无增压器棚绝缘子的破坏放电,对增压器棚的有效性进行了量化。这些研究的结果也可被视为对国家和国际标准技术委员会改进特高压(UHV)绝缘子在强人工降雨下测试的标准化程序的贡献。必须考虑到相关特高压测试程序的明确定义和测试安排,包括紫外线相机的使用。
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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