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Evidencing of the Capacitive Effects on the Development of Creeping Discharges at Solid/Fluid Interfaces

机译:关于固体/流体界面在爬行放电的发展的逐步证明

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The present paper reports on the evidencing of the capacitive effects on the characteristic parameters of the surface discharges propagating over different types of insulators immersed in gases or dielectric liquids, in a point-plane electrode arrangement submitted to different types of voltage waveforms namely AC, DC and lightning impulse voltages. These effects are highlighted through the influence of thickness and dielectric constant of insulators. The investigated insulators are circular samples of different thicknesses issued of various materials of different dielectric constants (namely, PTFE, glass, epoxy, Phenoplast resin (Bakelite) and pressboard); and the considered fluids are mineral oil, vegetable oil, and gases. It is shown that the lengths of discharges and surface density of their branches increase when the thickness of insulator is reduced and/or the dielectric constant of insulator is increased what clearly evidences the role of capacitive effects.
机译:本文报告关于在浸入气体或介电液体的不同类型的绝缘体上传播的表面放电的特征参数的对电容效应的证明,在提交给不同类型的电压波形的点平面电极布置中,即AC,DC和闪电脉冲电压。通过绝缘体的厚度和介电常数的影响,突出了这些效果。研究的绝缘体是不同厚度的圆形样品,其不同介电常数的各种材料(即,PTFE,玻璃,环氧树脂,吩体树脂(Bakelite)和压板);所考虑的液体是矿物油,植物油和气体。结果表明,当绝缘体的厚度减小和/或绝缘体的介电常数增加了显然证明了电容效应的作用时,它们的分支的排出长度增加。

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