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DC performance of non-uniformly transversal polluted glass insulation under parallel electrical discharges' effect

机译:平行电气放电效果下非均匀横向污染玻璃绝缘的直流性能

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摘要

The aim of this paper is to quantify the evolution's effect of parallel electrical discharges on the performance of a plane insulation placed simultaneously under conditions of a non-uniform transversal distribution of pollution and positive DC voltage. The results emanating from this experimental study revealed a maximum increase about 18% of flashover voltage of insulation's non-uniform transversal distribution of the insulation compared to that obtained under uniform pollution distribution. The existence of a limit value of the electrical conductivities' ratio of the lightly and the heavily contaminated bands, characterized by an early development of the electrical flashover arc of the insulation in the heavily polluted band, was demonstrated in this investigation. Also, a direct link has been established between the flashover frequency of the insulation's highly contaminated band, under the effect of a non-uniform transversal distribution of pollution and its electrical resistance. Similarly, an approximation linking the insulation's length to the effective width of an electrical arc in its last phase of development and consequently the number of electrical arcs that can develop in the two differently polluted bands just before the insulation's flashover was done in this study.
机译:本文的目的是通过在污染的不均匀横向分布的条件下量化平行电放电对平行电放电对平面绝缘性能的影响。从该实验研究中发出的结果显示绝缘绝缘闪络电压的最大增加约为18%的绝缘体的绝缘体的横向横向分布相比,而在均匀的污染分布下获得。在这次研究中,证明了在本研究中表明了在大量污染频段中绝缘的绝缘的早期发展的电导率和污染带的电导率的极限值。此外,在绝缘高度污染的频带的闪络频率之间建立了直接连接,在污染的不均匀横向分布和电阻的影响下。类似地,将绝缘的长度连接到电弧的有效宽度的近似值在其最后一个阶段,因此可以在本研究中完成绝缘闪光灯之前在两个不同污染的频段中开发的电弧的数量。

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