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Influence of FGM layer on the distribution of the electric field in DC cable joints insulations

机译:FGM层对直流电缆关节绝缘中电场分布的影响

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摘要

This paper presents the results of a study regarding the influence of a Field Grading Material (FGM) on the electric field and temperature distributions in the insulations of a power cable joint model. The computation was performed at steady state for a cable joint insulation consisting of Ethylene Propylene Rubber (EPR) installed for a cable with Cross-linked Polyethylene (XLPE) insulation. The presence of the FGM layer leads to important modifications of the electric field values, especially near the corners of the cable joint inner semiconductive layer. The results also show that the maximum electric field and temperature values, as well as the surface charge density values present at the interface between the insulations are lowered by using a FGM layer. This leads to reduced electric stresses and charge injection. The reduction of the surface charge density values also reduces the values of the residual electric field and leads to a slowdown of insulation ageing.
机译:本文介绍了关于电源电缆接头模型绝缘中电场分级材料(FGM)对电源电场和温度分布的研究的研究结果。 以稳定状态执行计算,该电缆接头绝缘体由安装用于具有交联聚乙烯(XLPE)绝缘电缆的乙烯丙烯橡胶(EPR)组成。 FGM层的存在导致电场值的重要修改,特别是在电缆接头内半导电层的拐角附近。 结果还示出了通过使用FGM层降低了最大电场和温度值,以及在绝缘之间的界面处存在的表面电荷密度值。 这导致电应力减小和电荷注入。 表面电荷密度值的减小也降低了残余电场的值,并导致绝缘老化的放缓。

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