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Electric field distribution in 132 kV XLPE cable termination model from finite element method

机译:132 kV XLPE电缆端接模型的电场分布的有限元法。

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摘要

High voltage cable terminations are widely used in power system networks. A proper design of cable termination is essential in reducing the electric field distribution around the end of high voltage cable. However, if there are defects exist at cable termination structure, the electric field can be enhanced significantly and can be the source of electrical discharges. Therefore, it is important to understand the effect of defects on the electric field distribution at cable terminations. In this work, a 132 kV XLPE outdoor cable termination has been modelled using finite element analysis (FEA) method. The model has been used to simulate the electric field distribution in the cable termination in the presence of defects. Defects that have been considered are void defect in porcelain, stress cone and fluid, sharp pin on the porcelain surface and delamination defect between the insulator and the stress cone. The effect of different void location, material dielectric constant and porcelain radius on the electric field magnitude at cable termination have also been investigated. From the results obtained in this work, a better understanding of the electric field distribution at the cable termination with defects can be attained.
机译:高压电缆终端广泛用于电力系统网络。适当的电缆端接设计对于减少高压电缆末端周围的电场分布至关重要。但是,如果电缆端接结构存在缺陷,则电场会显着增强,并且可能成为放电源。因此,了解缺陷对电缆终端处电场分布的影响非常重要。在这项工作中,已经使用有限元分析(FEA)方法对132 kV XLPE室外电缆终端进行了建模。该模型已用于在存在缺陷的情况下模拟电缆终端中的电场分布。已考虑的缺陷包括瓷器中的空隙缺陷,应力锥和流体,瓷器表面上的尖针以及绝缘子和应力锥之间的分层缺陷。还研究了不同的空隙位置,材料介电常数和瓷半径对电缆终端处电场强度的影响。从这项工作中获得的结果,可以更好地理解带有缺陷的电缆终端处的电场分布。

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