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Study of the AC arc discharge characteristics over polluted insulation surface using optical emission spectroscopy

机译:利用光发射光谱研究污染绝缘表面上的交流电弧放电特性

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Flashover of contaminated insulators is one of the major problems for the power distribution. Laboratory experiments have shown that the arc characteristics have great influences on the study of flashover performance of contaminated insulators. In order to investigate the characteristics of AC arc discharge on the polluted insulation surface, an experimental system was designed. The emission spectroscopy of arc discharge was obtained by a CCD spectrometer, and lithium chloride was added in the artificial pollution to introduce lithium as the indicator element in the analysis of arc emission spectroscopy. Arc temperature was obtained by employing the relative line intensities method, and the electron density was determined by analyzing the Stark-broadening values of the profiles. It was indicated that the temperature of partial arc increased with the leakage current value, but electron density of partial arc barely changes with leakage current. Special attention was paid to the influence of gas pressure on the characteristics of partial arc. It was found that both the arc temperature and the electron density of the arc channel increased with pressure in the case of same leakage current.
机译:污染的绝缘子的闪络是配电的主要问题之一。室内实验表明,电弧特性对受污染绝缘子闪络性能的影响很大。为了研究被污染绝缘表面上交流电弧放电的特性,设计了一个实验系统。通过CCD光谱仪获得电弧放电的发射光谱,并且在人为污染中添加氯化锂以引入锂作为电弧发射光谱分析中的指示元素。通过使用相对线强度方法获得电弧温度,并通过分析轮廓的斯塔克-展宽值来确定电子密度。结果表明,部分电弧的温度随漏电流值的增加而升高,但部分电弧的电子密度随漏电流的变化不大。特别注意气压对局部电弧特性的影响。发现在相同漏电流的情况下,电弧温度和电弧通道的电子密度都随着压力而增加。

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