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Jumper Fitting Corona Characteristic for EHV High Altitude Transmission Line

机译:超高压高海拔输电线路的跳线拟合电晕特性

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Problems of electromagnetic environment are getting more and more attention nowadays for design and operation in power system. Corona discharge of jumper spacers for 750 kV transmission line in some northwest part areas of China is relatively severe and need to be optimized. In this paper finite element method is used to simulate the distributions of electric field on the surface of jumper spacer under the actual transmission line and influences of electric distribution are also discussed. According to the simulation results, corona discharge test is performed. By using the anti-corona ball on the clamp of jumper spacer can reduce the electric field strength from 35.4 kV/cm to 29.2 kV/cm (ball diameter 100 mm) and 22.5 kV/cm (ball diameter 150 mm). The inception voltage and extinction voltage are raised more than 23.5% and 19.4% respectively. The method discussed in this paper can be taken as the reference in optimization and design for the jumper spacer of 750 kV transmission line.
机译:如今,电磁环境问题越来越受到电力系统设计和运行的关注。中国西北部分地区750 kV输电线路的跨接垫片的电晕放电比较严重,需要进行优化。本文采用有限元方法模拟了实际传输线下跨接垫片表面的电场分布,并讨论了电分布的影响。根据模拟结果,进行电晕放电测试。通过在跨接垫片的夹具上使用防晕球,可以将电场强度从35.4 kV / cm降低到29.2 kV / cm(球直径100毫米)和22.5 kV / cm(球直径150毫米)。起始电压和消光电压分别提高了23.5%和19.4%以上。本文讨论的方法可以为750 kV输电线路跨接片的优化设计提供参考。

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