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首页> 外文期刊>Dielectrics and Electrical Insulation, IEEE Transactions on >Creeping discharges propagating on natural ester oils/pressboard interface under AC and lightning impulse voltages
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Creeping discharges propagating on natural ester oils/pressboard interface under AC and lightning impulse voltages

机译:在交流和雷电冲击电压下,蠕变放电在天然酯油/压榨板界面上传播

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摘要

This paper presents the results of experimental characterization of creeping discharges propagating over pressboard immersed in insulating oils, under AC and standard lightning impulse voltages. For comparison purposes, synthetic ester, rape seeds oil (natural ester) and mineral oil were also investigated. Two experimental arrangements were used: (1) a point-to-plane electrodes system where the pressboard is inserted between the electrodes such as the point is perpendicular to pressboard allowing a radial propagation of discharges; and (2) a point-to-bar electrodes system allowing a propagation of discharges in one direction, tangentially to pressboard. The characteristics of discharges propagation, their shape, stopping length (the maximum extension of creeping discharge) as well as the associated current and electrical charge versus the thickness of pressboard and the type of oil are analyzed. It is shown that the magnitude and polarity of voltage, the type of oil as well as the thickness of pressboard influence the characteristics of discharges and especially the stopping length and density of branches. The stopping length of creeping discharges is shorter for pressboardaturel esters' interfaces than with pressboard/mineral oil interface.
机译:本文介绍了在交流和标准雷电冲击电压下,浸没在绝缘油中的压板上传播的蠕变放电的实验表征结果。为了比较,还研究了合成酯,菜籽油(天然酯)和矿物油。使用了两个实验装置:(1)点对面电极系统,其中压板插入电极之间,例如该点垂直于压板,从而允许放电的径向传播; (2)点对棒电极系统,允许放电在一个方向上与压板相切地传播。分析了放电传播的特性,其形状,停止长度(蠕变放电的最大延伸)以及相关的电流和电荷与压板厚度和油类型的关系。结果表明,电压的大小和极性,油的种类以及压纸板的厚度都会影响放电的特性,尤其是分支的停止长度和密度。压板/天然酯的界面的蠕变放电的停止长度短于压板/矿物油的界面。

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