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Corona Discharge Characteristics of a Single Water Droplet under an AC Electric Field

机译:交流电场下单个水滴的电晕放电特性

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Higher voltages are increasingly being used in power transmission systems to improve capacity. Whilst overhead line conductors are well-designed for mechanical and electrical requirements, surface defects (e.g. damage, insects, raindrops, and pollution) enhance the electric field and may lead to corona discharge. Raindrops are the primary source of such corona discharge and the discharge behaviour is examined using a single waterdrop under the influence of an AC electric field in a sphere to plane configuration. The droplet is set at the centre of the sphere which is the high voltage electrode and MPD test system is employed to record the discharge process. When the applied voltage is increased beyond PD inception voltage, corona discharge occurs and is observed by a UV camera. The discharge process lasts for 119 s and extinguishes when the drop is ejected and become small enough not to discharge in this electric field. According to Pulse Sequence Analysis, the discharge behaviour does not change significantly during the discharge process but the maximum PD magnitude which is 11.46 nC and the maximum PD number happens at the end of discharge with wider phase angle. Furthermore, the time difference of the adjacent two pulses is nearly 0 s and 0.02 s and the voltage difference is around 0 kV, meaning they occur almost simultaneously or one cycle apart at near voltage. Three situations when discharge probably happens were listed in accordance with voltage difference.
机译:在输电系统中越来越多地使用更高的电压来提高容量。尽管架空线导体针对机械和电气要求进行了精心设计,但表面缺陷(例如损坏,昆虫,雨滴和污染)会增强电场并可能导致电晕放电。雨滴是此类电晕放电的主要来源,在球形到平面配置的AC电场的影响下,使用单个水滴检查了放电行为。液滴设置在球体的中心,球体是高压电极,MPD测试系统用于记录放电过程。当施加的电压增加到超过PD起始电压时,会发生电晕放电,并由UV相机观察到。放电过程持续119 s,并在液滴喷出时熄灭,液滴变得足够小,无法在该电场中放电。根据脉冲序列分析,在放电过程中放电行为没有明显改变,但最大PD大小为11.46 nC,最大PD数发生在放电结束时,相位角变宽。此外,相邻两个脉冲的时间差接近0 s和0.02 s,电压差约为0 kV,这意味着它们几乎同时发生或在接近电压时间隔一个周期出现。根据电压差列出了可能发生放电的三种情况。

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