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首页> 外文期刊>IEEE Transactions on Dielectrics and Electrical Insulation >Study on the effects of glaze icing on the corona onset characteristics of stranded conductors
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Study on the effects of glaze icing on the corona onset characteristics of stranded conductors

机译:结冰釉对绞合导体电晕起始特性的影响研究

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摘要

Glaze affects corona onset voltage (COV) after icing on the conductor surface. Energized icing on operating wires is always ignored in many tests, and the COV downtrend has not been elucidated. A series of AC corona tests on stranded conductors after energized icing are implemented in the multifunction climate chamber, and the UV imaging camera and I-U curve fitting method are applied to measure and analyze the COV. Finite element models are established to research the effect of glaze icicles on the field strength of conductors. Results show that glaze significantly reduces COV, with different glaze shapes leading to distinct COV values. Wires with thick radius receive high COV even when such wires are iced under the same duration. An Increase in icing time slows the decrease rate of COV values. High conductivity decreases COV and slightly changes the glaze morphology. Sharper icicles correspond to more serious field distortions and lower COV values. This paper provides a reference for the selection and design of transmission lines in glaze icing areas.
机译:釉在导体表面结冰后会影响电晕起始电压(COV)。在许多测试中,操作电线上的积冰总是被忽略,而且COV下降趋势尚未阐明。在多功能气候室中对通电的结冰后的绞合导体进行了一系列交流电晕测试,并应用了紫外成像相机和I-U曲线拟合方法来测量和分析COV。建立了有限元模型来研究釉面冰柱对导体场强的影响。结果表明,釉料显着降低了COV,不同的釉料形状导致不同的COV值。即使在相同的持续时间下结冰,具有较粗半径的电线也将获得较高的COV。结冰时间的增加会减慢COV值的降低速度。高电导率降低了COV,并略微改变了釉的形态。较尖的冰柱对应于更严重的场失真和较低的COV值。本文为釉面结冰地区输电线路的选择和设计提供参考。

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