首页> 外文会议>2016 IEEE International Conference on High Voltage Engineering and Application >Study on the electric-field characteristics of water tree region on the dry or wet condition in XLPE cables
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Study on the electric-field characteristics of water tree region on the dry or wet condition in XLPE cables

机译:交联聚乙烯电缆干,湿条件下水树区域的电场特性研究

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To studies the relationship between the dielectric parameters and electric-field characteristics in water tree region in XLPE cables, liquid needle electrode and high-frequency high-pressure were used for water tree accelerated aging of XLPE cable samples, and the shapes of water trees were observed by microscope. Then a finite element simulation was constructed based on the shapes of water trees observed, and the influence of the dielectric parameters in water tree region on the electric field surrounding the water tree was analyzed by simulated calculation. The results show that the electric-field strength of water tree peripheral increases and the electric-field strength of tip decreases and the water tree peripherals can easily become the starting point for electrical trees, with the increasing of the dielectric constant and electrical conductivity of the water tree. On the contrary, with the decreasing of the dielectric constant and electrical conductivity of the water tree, the electric-field strength of tip increases and the electric-field strength of water tree peripheral decreases, and the tip can easily become the starting point for electrical trees.
机译:为了研究交联聚乙烯电缆中水树区域的介电参数与电场特性之间的关系,采用液针电极和高频高压对交联聚乙烯电缆样品进行水树加速老化,水树的形状为用显微镜观察。然后根据观察到的水树的形状进行有限元模拟,并通过模拟计算分析了水树区域的介电参数对水树周围电场的影响。结果表明,随着绝缘子介电常数和电导率的增大,水树外围的电场强度增大,尖端电场强度减小,水树外围容易成为电树的起点。水树。相反,随着水树的介电常数和电导率的降低,尖端的电场强度增加,水树周边的电场强度降低,尖端容易成为电学的起点。树木。

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