屏障直径对变压器油在交流电压下的性能的影响

F. Guerbas, M. Zitouni, A. Boubakeur, A. Beroual
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引用次数: 8

摘要

介质界面对高压电器的绝缘性能有重要影响。在电力变压器绝缘系统中,油固界面是一个相对薄弱的组成部分。因此,在考虑充油变压器中油击穿的影响时,应考虑放电与固体表面的相互作用。本文研究了点平面电极结构中绝缘阻挡层对交流电压下变压器油行为的影响。研究了势垒在电极间的位置和直径等特性对预击穿和击穿现象的影响。结果表明,在点电极附近插入阻挡层可以提高击穿电压,降低击穿前电荷。击穿电压的增加是由于破坏电荷的通道伸长。通过确定击穿前电荷和击穿电压,可以估计出势垒的最佳位置。阻挡层直径影响击穿电压、击穿前电荷和放电轨迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Barrier diameter effect on the behaviour of transformer oil submitted to AC voltage
Dielectric interfaces can have a significant effect on the insulating performances of HV apparatus. The oil/solid interface represents a relatively weak component of an insulation system in power transformer. Therefore, when we are considering the effect of oil breakdown in oil filled transformer, we should consider the interactions which electrical discharges may have with solid surfaces. This work is devoted to the influence of insulating barrier on the behaviour of transformer oil under ac voltage in point-plane electrode configuration. The influence of the characteristics of barrier such as its position between electrodes, and its diameter on the pre-breakdown and breakdown phenomena is investigated. It is shown that the insertion of barrier near the point electrode increases the breakdown voltage and leads to decrease the pre-breakdown charge. The increase of breakdown voltage is due to the channel elongation of the disruptive charge. By determination of the pre-breakdown charge and breakdown voltage, we can estimate the optimal position of the barrier. The barrier diameter influences the breakdown voltage, the pre-breakdown charge and the trajectory of discharge.
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