DC discharge performance at the tip of an icicle

N. Sugawara, K. Hokari
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引用次数: 6

Abstract

In order to gain a better understanding of the DC discharge performance of a string of ice-covered insulators with icicles, discharges were performed with three shapes of artificial icicles under DC voltages in a cold chamber. The DC flashover voltage is shown to increase with a decrease in temperature because of the simultaneous increase of the resistance of the icicle. This increase in resistance occurs as the thickness of the water film on the icicle surface decreases exponentially with the decrease in temperature. The melted weight W/sub m/ of the icicles was greater for negative polarity than for positive polarity when melting occurred by corona discharge. These differences in W/sub m/ may confirm reports that negative flashover voltage for ice-accreted insulators is lower than positive flashover voltage. There was a hot region on the icicle surface of the rod type near the boundary between the electrode in the ice and the ice.<>
冰柱尖端的直流放电性能
为了更好地了解带冰柱的覆冰绝缘子串的直流放电性能,在冷室中用三种形状的人工冰柱在直流电压下进行了放电。由于冰柱的电阻同时增加,直流闪络电压随着温度的降低而增加。当冰柱表面的水膜厚度随着温度的降低呈指数级下降时,阻力就会增加。电晕放电熔化时,负极性冰柱的熔化重量W/sub m/大于正极性冰柱。W/sub - m/的这些差异可能证实了关于加冰绝缘子的负闪络电压低于正闪络电压的报道。在棒型冰柱表面靠近冰中电极与冰之间的边界处存在一个热区。
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