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Partial discharge characteristics of surface tracking on oil-impregnated pressboard under AC voltages

机译:交流电压下含油压纸板表面跟踪的局部放电特性

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Creeping discharge at the oil-pressboard interface is a serious fault condition because it can lead to catastrophic failure under normal operating conditions of large transformers. Creeping discharge leads to the development of a conducting path that is generally accepted as white marks on a board surface due to localised heating. The visible white marks indicate a drying out process of the pressboard through moisture evaporation and the breaking of oil molecules to generate gases in the pressboard pores. The processes can continue from minutes to months or even years until failure. Characterising this type of faulty condition in a condition monitoring programme is important for transformer life management. This paper explains the behaviour of surface discharge observed during a surface discharge experiment at the oil-pressboard interface using a needle-bar electrode configuration. Correlation between partial discharge (PD) activities and measured data in terms of phase resolved partial discharge (PRPD) patterns have been undertaken. The experimental results also show a decreasing trend of the average discharge magnitude during the formation of the white marks that propagate towards the earth bar. This finding is qualitatively comparable to on-line problems reported previously, i.e. there was a falling trend and no obvious evidence of imminent failure from the monitoring data of PD activity of a large power transformer that eventually suffered from an unexpected fault.
机译:油压板界面处的蠕变放电是一个严重的故障情况,因为在大型变压器的正常运行条件下,它可能导致灾难性的故障。蠕变放电导致形成导电路径,该导电路径由于局部加热而通常被认为是板表面上的白色标记。可见的白色标记表示压板通过水分蒸发和油分子破裂而在压板孔中产生气体的干燥过程。该过程可以持续数分钟到数月甚至数年,直到失败为止。在状态监视程序中表征这种故障状态对于变压器寿命管理很重要。本文介绍了使用针杆式电极配置在油压板界面进行表面放电实验时观察到的表面放电行为。已经进行了局部放电(PD)活动与测量数据之间的相关性,这些数据与相位分辨局部放电(PRPD)模式有关。实验结果还表明,在向接地棒传播的白色标记的形成过程中,平均放电幅度呈下降趋势。该发现在质量上可与先前报告的在线问题相比较,即存在下降趋势,并且没有从大型电力变压器的PD活动的监视数据中发现即将发生故障的明显证据,该故障最终遭受意外故障。

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