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Dielectric properties of natural ester, synthetic ester midel 7131 and mineral oil diala D

机译:天然酯,合成酯Midel 7131和矿物油D的介电性能

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摘要

The insulating liquids used in industrial applications are typically mineral oils. In recent years however, significant attention has been paid to alternative insulating fluids, including synthetic and natural ester liquids. In order to expand their practical applications, it is important to have detailed information on their dielectric properties. In this present paper, the dielectric properties of synthetic ester, Midel 7131; mineral oil, Shell Diala D; and vegetable (rapeseed) oil have been investigated. It has been shown that Midel 7131 has a higher ac breakdown voltage (27.6 kV) as compared with Diala D oil (26.4 kV) and rapeseed oil (24.6 kV). However, the breakdown voltage of the Diala D oil has the smallest standard deviation (7%) amongst the tested liquids (13% for Midel 7131 and 11% for rapeseed oil). Statistical analysis of the breakdown voltages has been conducted and it has been shown that the ac breakdown voltages can be described by a normal distribution. dc I-V characteristics have been measured and the space charge saturation regime has been observed for all three liquids starting from -C;9 kV for positive energisation and -C;10 kV for negative energisation in the point-plane topology. Apparent mobilities of the charge carriers in the tested liquids have been obtained using I1/2-V curves; these mobilities can be used for calculation of the space charge influenced distribution of the electric field in liquid insulators stressed with dc voltage. Such analysis can be important for design and exploitation of HVDC power systems.
机译:工业应用中使用的绝缘液体通常是矿物油。但是,近年来,人们对替代的绝缘液给予了极大的关注,包括合成和天然酯液。为了扩展其实际应用,重要的是要获得有关其介电性能的详细信息。在本文中,合成酯的介电性能为Midel 7131;矿物油,壳牌Diala D;和植物油(菜籽油)已被研究。已显示,与Diala D油(26.4 kV)和菜籽油(24.6 kV)相比,Midel 7131具有更高的交流击穿电压(27.6 kV)。但是,Diala D油的击穿电压在测试液体中具有最小的标准偏差(7%)(Midel 7131为13%,菜籽油为11%)。对击穿电压进行了统计分析,结果表明,交流击穿电压可以用正态分布表示。在点平面拓扑中,已测量了所有三种液体的直流I-V特性,并观察到了从-C; 9 kV(正向)和-C; 10 kV(负向)开始的所有三种液体的空间电荷饱和状态。使用I 1/2 -V曲线获得了载流子在被测液体中的表观迁移率。这些迁移率可用于计算受直流电压作用的液体绝缘子中电场对空间电荷影响的分布。这种分析对于高压直流输电系统的设计和开发很重要。

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