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Simulation of electrical trees in XLPE cable insulation and electric field analysis

机译:XLPE电缆绝缘和电场分析中电气树仿真

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摘要

To understand the non-breakdown phenomenon during the accelerating electrical tree ageing in cross-linked polyethylene (XLPE) cable insulation, the non-breakdown mechanism of electrical tree is investigated in this study. The needle electrodes were inserted into the cable insulation samples to accelerate electrical tree ageing. The electrical trees which were not broken down had a larger expansion range and branch density. Referring to the actual cable slice for the internal structure of the sample, the electrical tree model with different number of tree channels was built. The correspondence between electric distortion and the number of tree channels was discussed. According to the calculation of the electric field distribution by the finite element method, the results showed that the electric field strength at the tip of electrical tree was reduced when the number of channels was increased. Compared with the single electrical tree channel, when the insulation was completely carbonised in the electrical tree region the electric field strength at the tip of electrical tree was reduced by 20.8%. The electric field shielding which was formed by the tips of electric trees could reduce the electric field strength at the tip of the tree and it could result in the formation of the non-breakdown electric tree.
机译:为了了解在交联聚乙烯(XLPE)电缆绝缘中加速电气树老化期间的非击穿现象,在该研究中研究了电气树的非击穿机制。将针电极插入到电缆绝缘样品中以加速电气树老化。未分解的电气树具有更大的膨胀范围和分支密度。参考实际电缆切片用于样本的内部结构,构建了具有不同数量的树频道的电气树模型。讨论了电失真与树频道数之间的对应关系。根据有限元方法的电场分布的计算,结果表明,当电信号的数量增加时,电动树尖端的电场强度降低。与单根电树通道相比,当绝缘在电气树区域中完全碳化时,电尖的电场强度降低20.8%。由电树尖端形成的电场屏蔽可以降低树尖处的电场强度,并且可能导致非击穿电动树的形成。

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