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Assessment of Thermal and Electric Field Characteristics of HVDC Cable According to the Inner Filler Size of XLPE

机译:根据XLPE的内部填充尺寸评估HVDC电缆的热和电场特性

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摘要

Increasing the rating of the HVDC cable causes an inevitable increase in the heat generated inside cable. Thus, it is necessary to improve the thermal conductivity of the Cross-linked polyethylene (XLPE) insulation material used in the extruded cable for effective thermal management. Also, several methods have been pro-posed so far to increase the thermal conductivity of XLPE. However, the influence of the filler addition on the thermal conductivity has been mainly studied experimentally so far. Therefore, numerical analysis was performed to investigate the effect of filler size and its content on thermal conductivity of XLPE. In the modelling of XLPE composite for numerical analysis spherical Al_2O_3 particles with a radius of 25, 50, 100 and 200 nm were considered. Additionally, filler contents were considered with up to 20 wt%. Numerical analysis of XLPE composite model showed that the effective thermal conductivity increased with the smaller filler size. Also, as the content of filler increased, the effective thermal conductivity increased. A coupled electro-thermal model considering the previously derived thermal conductivities was used to investigate the influence of the thermal conductivity of XLPE on temperature and electric field distribution. From the simulation results it can be concluded that, higher thermal conductivity of XLPE can reduce the thermal and electrical stress of the cable. Therefore, it is considered that the smaller the size of the filler added to the insulation or the larger the content of the filler, the thermal and electrical stress in the cable can be reduced.
机译:增加HVDC电缆的额定值会不可避免地增加电缆内部产生的热量。因此,为了有效地进行热管理,有必要提高在挤出电缆中使用的交联聚乙烯(XLPE)绝缘材料的导热性。而且,到目前为止,已经提出了几种方法来增加XLPE的热导率。但是,到目前为止,主要是通过实验研究填料的添加对热导率的影响。因此,进行了数值分析,以研究填料尺寸及其含量对XLPE导热系数的影响。在用于数值分析的XLPE复合材料的建模中,考虑了半径为25、50、100和200 nm的球形Al_2O_3颗粒。另外,认为填料含量最高为20重量%。 XLPE复合材料模型的数值分析表明,有效热导率随填料尺寸的减小而增加。另外,随着填料含量的增加,有效导热率也增加。考虑先前导出的热导率的耦合电热模型用于研究XLPE的热导率对温度和电场分布的影响。从仿真结果可以得出结论,XLPE的较高导热率可以减少电缆的热应力和电应力。因此,认为添加到绝缘体中的填充物的尺寸越小或填充物的含量越大,可以减小电缆中的热应力和电应力。

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