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Study on the influence of charged glaze on the corona onset voltage of bundle conductor

机译:带电釉对束状导体电晕起始电压的影响研究

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摘要

Glaze grows on the conductor surface will affect corona onset voltage (COV). Wires iced under voltage is often neglected and scaled models always adopted to study the actual bundle conductors, there is no lights have been thrown into the downtrend of COV during charged icing. AC corona tests of iced bundle conductors implemented in the Multifunction Climate Chamber, the UV imaging camera and I-U curve fitting applied to analyze the COV. Finite element models of iced conductor established to discuss how the glaze icicles affect electric field. Results show that glaze cut the COV down greatly. Different icicle morphology leads to distinct COV values. With more sub-conductors, bundle conductor gets higher COV in the same icing time. With the Increase of icing time, COV decreases with the rate slow down. Higher conductivity has no effect on morphology but reduces the COV. Sharper icicles lead to more seriously field distorted and lower COV values. This paper provides reference for selection and designation of transmission line in glaze icing areas.
机译:导体表面上的釉料会影响电晕起始电压(COV)。经常会忽略在电压下结冰的电线,并且始终采用比例模型来研究实际的束导体,在充电的结冰过程中,没有光进入COV的下降趋势。在多功能气候箱中进行了冰束导体的AC电晕测试,并应用了UV成像相机和I-U曲线拟合来分析COV。建立冰导体的有限元模型,以讨论釉冰柱如何影响电场。结果表明,釉料大大降低了COV。不同的冰柱形态导致不同的COV值。随着更多的子导体,束导体在相同的结冰时间内获得更高的COV。随着结冰时间的增加,COV随速率降低而降低。较高的电导率对形态没有影响,但会降低COV。较尖的冰柱会导致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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