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Analysis of AC 500kV XLPE Submarine Cable Insulation Laboratory Aging Condition Based on Frequency Domain Dielectric Spectroscopy

机译:基于频域介电谱的AC 500kV XLPE海底电缆绝缘实验室老化条件分析

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With the rapid rise of new energy industry and its rapid development all over the world, there is a great market for submarine cable products. The world's first class AC 500kV cross-linked polyethylene (XLPE) insulated submarine cable will soon be put into operation in the “Zhoushan-Ningbo” interconnection project. Aging of insulation materials after operation will be an important factor restricting the safe operation of the 500kV XLPE cable. Taking into consideration that the frequency domain spectroscopy (FDS) is a nondestructive testing (NDT) method, in this paper, the changes of dielectric spectroscopy of the AC 500kV XLPE submarine cable material during 130°C thermal aging process were studied. The aged samples show increasing dielectric constant and dielectric loss. Besides, Iε` is defined to estimate the aging condition of XLPE samples. It can be clearly seen that the samples severely aged when the Iε' exceeds 1. The Iε' can be used to diagnostic the aging condition of the AC 500kV submarine cable insulation material. Besides, the ε`rand tanδ in the lower frequency of the seriously aged sample increase significantly, and the inflection points of tanδ curves for the seriously aged sample move to higher frequency significantly.
机译:随着新能源产业的迅速崛起及其在世界范围内的快速发展,海底电缆产品有着广阔的市场。世界一流的交流500kV AC交联聚乙烯(XLPE)绝缘海底电缆将很快在“舟山-宁波”互连项目中投入运营。操作后绝缘材料的老化将是限制500kV XLPE电缆安全操作的重要因素。考虑到频域光谱法(FDS)是一种无损检测(NDT)方法,本文研究了交流500kV XLPE海底电缆材料在130°C热老化过程中介电光谱的变化。老化的样品显示出增加的介电常数和介电损耗。另外,定义Iε`以估计XLPE样品的老化条件。可以清楚地看到,当Iε'超过1时,样品将严重老化。Iε'可用于诊断AC 500kV海底电缆绝缘材料的老化条件。此外,严重老化样品的较低频率处的εrandtanδ显着增加,并且严重老化样品的tanδ曲线的拐点显着移至较高频率。

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