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首页> 外文期刊>Generation, Transmission & Distribution, IET >Crystallisation effect of conductive ions in freezing water during phase transition and its effect on ice flashover voltage
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Crystallisation effect of conductive ions in freezing water during phase transition and its effect on ice flashover voltage

机译:相变过程中冷冻水中导电离子的结晶作用及其对冰闪电压的影响

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摘要

Icing experiments on three units of XP4-160 insulator string are conducted to reveal the influence of the crystallisation effect of conductive ions during phase transition on melting water conductivity and ice flashover voltage, and to analyse the motion of conductive ions and its spatial distribution. The influence of different parameters, such as freezing water conductivity, electric field and pollution, on crystallisation effect is examined and analysed. Results of the tests indicate that the melting water conductivity of the ice layer and icicles is considerably greater than that of freezing water, particularly for a polluted insulator, because of the crystallisation effect. The electric field has a significant influence on the crystallisation effect, that is, the melting water conductivity under a non-energised condition is higher than that under an energised condition. Finally, through 35 kV insulator flashover tests, the reason for the propagation of partial arcs over icicles is determined, and the flashover process is illustrated. The crystallisation effect during phase transition changes the ion distribution in a solid ice layer, thereby increasing water film conductivity, and is also a critical reason for the decline of ice flashover voltage.
机译:在XP4-160绝缘子串的三个单元上进行结冰实验,揭示了相变过程中导电离子的结晶作用对熔融水电导率和冰闪电压的影响,并分析了导电离子的运动及其空间分布。考察并分析了冷冻水电导率,电场和污染等不同参数对结晶效果的影响。测试结果表明,由于结晶作用,冰层和冰柱的融水电导率比冷冻水大得多,特别是对于污染的绝缘子。电场对结晶效果具有显着影响,即,在未通电条件下的熔融水电导率高于在通电条件下的熔融水电导率。最后,通过35 kV绝缘子闪络测试,确定了部分电弧在冰柱上传播的原因,并说明了闪络过程。相变过程中的结晶作用改变了固体冰层中的离子分布,从而增加了水膜的电导率,这也是冰闪络电压下降的关键原因。

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