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Effect of electric field uniformity on positive streamer and breakdown characteristics of transformer liquids

机译:电场均匀性对变压器液体正射流和击穿特性的影响

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Streamer development in liquid has different dominant mechanisms under uniform and divergent electric fields, respectively initiation and propagation. This paper presents a study on the influence of electric field uniformity on the pre-breakdown and breakdown characteristics of transformer insulating liquids. Streamers were investigated experimentally in different needle-plane non-uniform field and plane-needle-plane semi-uniform field configurations under standard positive lightning impulses. For the same gap distance, streamers under non-uniform field propagate with a more side-branched structure whereas streamer propagation under semi-uniform field is more constrained to the axial direction. Field enhancement factor was used to indicate the degree of inhomogeneity of the field configuration. Streamers in fields with higher field enhancement factors occupy larger areas. As field enhancement factor reduces, the streamer withstanding probability distribution gets closer to the breakdown probability distribution and hence the breakdown happens at a lower normalized voltage level. Furthermore, a transition phase from a propagation-dominated to an initiation-dominated process of streamer development was evident as the field enhancement factor decreases. The field enhancement factor at which this transition happens was quantitatively derived. It is 54.1 for the investigated mineral oil under positive lightning impulses.
机译:液体中的飘带发育在均匀和发散的电场下具有不同的主导机制,分别启动和传播。本文介绍了电场均匀性对变压器绝缘液体预击穿和击穿特性的影响。在标准的正闪电冲动下,在不同的针平的非均匀场和平面 - 针平面半统一场配置中实验研究飘带。对于相同的间隙距离,在非均匀场下的飘带与更侧支化的结构传播,而半均匀场下的拖缆传播更加约束到轴向。用于指示场配置的不均匀性的现场增强因子。具有更高现场增强因子的字段中的飘带占据更大的区域。作为现场增强因子减少,飘带的概率分布变得更接近击穿概率分布,因此崩溃发生在较低的归一化电压电平。此外,由于现场增强因子减小,从传播到垃圾发育的发起主导地处理的转变阶段显而易见。该转换发生的现场增强因子是数量地导出的。在正闪电脉冲下调查的矿物油是54.1。

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