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Mathematical Modeling of Electric Current Distribution in Water Trees Branches in XLPE Power Cables Insulation

机译:XLPE电力电缆绝缘中水树分支中电流分布的数学模型

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During the long-term operation of power cables with cross-linked polyethylene (XLPE) insulation, moisture inevitably accumulates in them, forming thin branched structures filled with water - water trees. They are considered to be the main cause of insulation degradation. The features of electric current distribution in the branches of water trees in XLPE insulation of power cables were studied. Mathematical modeling of the current density arising in the trees under the influence of an external electric field was carried out for their most characteristic configurations, according to experimental data. The dependences of the maximum values of the current density are established depending on the dimensional parameters of the trees branches (length, geometric shape, angle of inclination and walls curvature for narrowing). The simulation was carried out by the finite element method in the Comsol software environment. Nonlinear properties of insulation in strong electric fields (which appears in ultra-high voltage cables above 110 kV) was taken into account. The obtained information improves the understanding of the degradation mechanisms in XLPE insulation regarding the occurrence of electrothermal processes.
机译:在具有交联聚乙烯(XLPE)绝缘的电力电缆的长期运行中,水分不可避免地积聚在其中,形成充满水-水树的细分支结构。它们被认为是绝缘劣化的主要原因。研究了电力电缆交联聚乙烯绝缘中水树分支中的电流分布特征。根据实验数据,对树木的最典型配置进行了数学建模,以了解树木在外部电场的影响下产生的电流密度。电流密度最大值的依赖关系取决于树枝的尺寸参数(长度,几何形状,倾斜角度和壁曲率变窄)。在Comsol软件环境中通过有限元方法进行了仿真。考虑了强电场(在110 kV以上的超高压电缆中出现)绝缘的非线性特性。所获得的信息使人们对关于发生电热过程的XLPE绝缘中的降解机理的理解有所提高。

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