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DC Flashover Performance of Ice-Covered Composite Insulators with Parallel Air Gaps

机译:具有平行气隙的覆冰复合绝缘子的直流闪络性能

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DC flashover performance of ice-covered composite insulators with a parallel air gap (CI/PAG) is an important technical consideration when such insulators are used to isolate ground wires for the purpose of DC ice-melting. Tests on tension and suspension types of CI/PAG were thus carried out in the artificial climate chamber to investigate their DC icing flashover performance. The influences of parallel air gap, ice thickness, pollution severity and air pressure on DC negative 50% flashover voltage (U50%) of CI/PAG were investigated. Test results show that the parallel air gap affected both the discharge path and U50%. With increasing ice thickness, U50% declined by up to 52%; this effect was more evident when the breakdown occurred in the air gap. The pollution severity affected U50% only when the flashover happened along insulator surface. With a decrease of atmospheric pressure, U50% decreased. U50% and the ratio of air pressure were in a power function relationship with a positive characteristic exponent which was relevant to the discharge path.
机译:具有平行气隙(CI / PAG)的覆冰复合绝缘子的直流闪络性能是重要的技术考虑因素,当此类绝缘子用于隔离融冰以实现DC冰的目的时。因此,在人工气候箱中对CI / PAG的张力和悬挂类型进行了测试,以研究其直流结冰闪络性能。研究了平行气隙,冰厚,污染严重程度和气压对CI / PAG的直流负50%闪络电压(U 50%)的影响。测试结果表明,平行气隙对放电路径和U 50%都有影响。随着冰层厚度的增加,U 50%下降了52%。当故障发生在气隙中时,这种效果更加明显。仅当沿绝缘子表面闪络时,污染严重程度才会影响U 50%。随着大气压的降低,U 50%降低。 U 50%与空气压力比呈幂函数关系,且特征曲线的正指数与放电路径有关。

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