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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Charge cluster triggers unpredictable insulation surface flashover in pressurized SF6
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Charge cluster triggers unpredictable insulation surface flashover in pressurized SF6

机译:电荷簇触发加压SF6中不可预测的绝缘表面闪光灯

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This paper reports an unpredictable insulation surface flashover phenomenon triggered by surface charge clusters under DC electric field, which is experimentally revealed by a donut-shaped dust cluster figure, presenting the outline of these surface charge clusters and showing a hollow donut-shaped structure interestingly. The charge cluster is randomly formed when ions originating from local micro-protrusions accumulate on the insulation surface, the edge of which produces a strong electrical field to induce local streamers. These local streamers provide an inducing factor, unpredictably triggering surface flashover. An in-depth illustration of how the dust phase transition depicts surface charge cluster evolution is proposed. This uncovered phenomenon has significant physical implications in revealing unpredictable insulation surface flashover and has great significance in further developing of HVDC gas insulated power transmission systems and other fields, such as microelectronics and space aircrafts.
机译:本文报道了在直流电场下由表面电荷团引发的一种不可预测的绝缘表面闪络现象,该现象由一个甜甜圈形状的尘埃团图形实验揭示,给出了这些表面电荷团的轮廓,并有趣地显示了一个中空的甜甜圈形状的结构。当来自局部微突起的离子积聚在绝缘表面上时,电荷团随机形成,绝缘表面的边缘产生强电场以诱导局部流光。这些局部流光提供了一个诱发因素,不可预测地触发表面闪络。本文对尘埃相变如何描述表面电荷团簇演化进行了深入的阐述。这一现象对揭示不可预测的绝缘表面闪络具有重要的物理意义,对进一步发展高压直流气体绝缘输电系统和微电子、航天飞机等领域具有重要意义。

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