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Influence of design parameters and defects on electric field distributions inside MV cable joints

机译:设计参数和缺陷对MV电缆接头电励磁分布的影响

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摘要

This paper presents a 2d finite-element analysis for a 33-kV, three-phase, three-core cross-linked polyethylene (XLPE) underground cable (UGC) straight joint of the heat shrink type. The aim of this work is to show how the joint design parameters and different defects affect the electric field distribution, and find optimum material properties to enhance the lifetime of cable joints. This is investigated by calculating the electric field distributions and showing how the optimized selection of joint material properties can reduce the localized high electric field to avoid partial discharge activities. Several design parameters are investigated such as insulation layer's thickness and relative permittivity, and termination angles of ferrule and its insulation. In addition, size and location of different defects such as air voids, water droplets, sharp tips and delamination are examined. The paper concludes important points for proper design of medium-voltage (MV) cable joints to enhance their lifetime and hence increase the reliability of such cable systems.
机译:本文提出了用于33 kV,三相,三芯交联聚乙烯(XLPE)地下电缆(UGC)直接接头的2D有限元分析。这项工作的目的是展示联合设计参数和不同缺陷如何影响电场分布,并找到最佳材料特性以增强电缆接头的寿命。通过计算电场分布来研究,并表明有关接头材料的优化选择如何减少局部高电场以避免局部放电活动。研究了几种设计参数,例如绝缘层的绝缘层的厚度和相对介电常数,以及套圈的终端角度及其绝缘。另外,检查不同缺陷的尺寸和位置,例如空隙,水滴,尖锐的提示和分层。本文得出了适当设计的重要观点,以提高其寿命,从而提高了这种电缆系统的可靠性。

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