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Design of XLPE cables and soundness confirmation methods to extra high voltage XLPE cables

机译:XLPE电缆和合理确认方法的设计到超高电压XLPE电缆

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The design of XLPE cables, degradation factors to working XLPE cables, and exclusion methods of the degradation factors are reviewed. In addition, the soundness confirmation methods of extra high voltage XLPE cables are reviewed. As degradation factors of XLPE cables, electric stress degradation, partial discharge degradation, and water treeing degradation exist. However, in XLPE cable design, water treeing degradation is not considered in particular. When initial soundness is confirmed in XLPE cables, long-term performance can be expected. Therefore, the process of excluding the initial defects in XLPE cable insulation, and checking the initial soundness of XLPE cables are emphasized during the development stage and in cable manufacturing. On the other hand, under immersed conditions, some degradation diagnoses are needed, although it is suggested that regular 66kV cables have a lifetime of 30 years. The detection of the water treeing degradation signal is carried out at the present time. When the cables are intended for use until and beyond the lifetime limit of 30 years, it will be necessary to argue how to confirm the soundness of existing XLPE cables, including studying the degradation degree of the actual cables.
机译:交联电缆,降解因素,工作交联电缆,且降解因素的排除方法的设计进行审查。此外,超高压交联电缆的合理性确认方法进行复核。作为交联电缆,电应力劣化,局部放电退化和水树降解存在的降解的因素。然而,在交联电缆的设计,水树老化并没有特别的考虑。当最初的稳健性在交联电缆被确认,可预期的长期表现。因此,不包括在XLPE电缆绝缘的初始缺陷,并检查XLPE电缆的初始健全性的过程中,在开发阶段和在电缆制造被强调。在另一方面,沉浸条件下,是需要一些退化的诊断,虽然它建议定期66千伏电缆有30年的寿命。所述水树降解信号的检测是在当前时刻进行。当电缆拟用于直到及以后的30年寿命的限制,这将是必要的争论如何确认现有的交联电缆,包括研究实际电缆的退化程度的合理性。

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