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应用增爬群改善大雨条件下800 kV叠锥型支柱绝缘子的雨闪性能(英文) 被引量:5

Use of Booster Sheds to Improve Performance of 800 kV Multicone Type Insulators Under Heavy Rain
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摘要 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 which 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 artificial rain,with and without booster sheds,it was possible to observe how significant the reduction on the flashover formation process was when booster sheds were 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 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. Studies based on AC high voltage tests have been done at Cepel to investigate the performance of 800 kV bushar insulators under heavy wetting conditions. Insulators were tested which are now used on site and also with dif- ferent configurations of booster sheds. Images recorded by ultra-violet (UV) camera were used to help the investiga- tions on the effectiveness of booster sheds. By comparing UV images of the insulator being stressed with high voltage under heavy artificial rain, with and without booster sheds, it was possible to observe how significant the reduction on the flashover formation process was when booster sheds were used. The effectiveness of booster sheds was also quan- tified 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 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.
出处 《高电压技术》 EI CAS CSCD 北大核心 2011年第11期2772-2779,共8页 High Voltage Engineering
关键词 UHV insulator heavy rain booster sheds wet tests disruptive discharge ultra-violet images UHV insulator heavy rain booster sheds wet tests disruotive discharge ultra-violet images
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参考文献4

  • 1Ely C H A, Lambeth P J, Looms J S T. The booster shed: prevention of flashover of polluted substation insulators in heavy wetting[J]. IEEE Transactions on Power Apparatus and Systems, 1978, 97(6): 2187-2197.
  • 2Haddad A,Warne D. Advances in high voltage engineering[M]. London, UK: IEE Power & Energy Series, 2004: 296-297.
  • 3IEC 60060-1 High voltage test techniques, part 1: general definitions and test requirements[S], 1989.
  • 4Orsino Oliveira Filho, Darcy R. Mello, Jose A. et al. Performance evaluation of 800 kV porcelain multicone type insulators under heavy rain based on laboratory tests[C] // 2008 International Conference on High Voltage Engineering and Application. Chongqing, China: IEEE, 2008: 9-13.

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