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Corona discharges on the surfaces of high voltage composite insulators

机译:高压复合绝缘子表面的电晕放电

摘要

The degradation of high voltage electrical insulation is a prime factor that can significantly influence the reliability performance and the costs of maintaining high voltage electricity networks. Little information is known about the system of localized degradation from corona discharges on the relatively new silicone rubber sheathed composite insulators that are now being widely used in high voltage applications.udThis current work focuses on the fundamental principles of electrical corona discharge phenomena to provide further insights to where damaging surface discharges may localize and examines how these discharges may degrade the silicone rubber material. Although water drop corona has been identified by many authors as a major cause of deterioration of silicone rubber high voltage insulation until now no thorough studies have been made of this phenomenon. udResults from systematic measurements taken using modern digital instrumentation to simultaneously record the discharge current pulses and visible images associated with corona discharges from between metal electrodes, metal electrodes and water drops, and between waters drops on the surface of silicone rubber insulation, using a range of 50 Hz voltages are inter compared. Visual images of wet electrodes show how water drops can play a part in encouraging flashover, and the first reproducible visual images of water drop corona at the triple junction of water air and silicone rubber insulation are presented.udA study of the atomic emission spectra of the corona produced by the discharge from its onset up to and including spark-over, using a high resolution digital spectrometer with a fiber optic probe, provides further understanding of the roles of the active species of atoms and molecules produced by the discharge that may be responsible for not only for chemical changes of insulator surfaces, but may also contribute to the degradation of the metal fittings that support the high voltage insulators. udExamples of real insulators and further work specific to the electrical power industry are discussed. A new design concept to prevent/reduce the damaging effects of water drop corona is also presented.
机译:高压电绝缘性能的下降是一个主要因素,会严重影响可靠性性能和维护高压电网的成本。关于相对较新的硅橡胶护套复合绝缘子的电晕放电引起的局部退化的系统知之甚少,该绝缘子现已广泛用于高压应用中。 ud这项工作集中在电晕放电现象的基本原理上,以提供进一步的信息。深入了解破坏性表面放电的位置,并检查这些放电如何降解硅橡胶材料。尽管许多作者已经确定水滴电晕是导致硅橡胶高压绝缘劣化的主要原因,但迄今为止,尚未对此现象进行深入研究。 ud是使用现代数字仪器进行系统测量以同时记录一定范围内金属电极,金属电极和水滴之间以及硅橡胶绝缘表面上的水滴之间的放电电流脉冲和与电晕放电相关的可见图像的结果相互比较了50 Hz的电压。湿电极的视觉图像显示了水滴如何起到促进闪络的作用,并提出了在水空气和硅橡胶绝缘的三重交界处水滴电晕的第一个可重现的视觉图像。使用带有光纤探头的高分辨率数字光谱仪,从放电开始到放电期间(包括火花放电)产生的电晕,使您进一步了解放电可能产生的原子和分子的活性物质的作用。这不仅导致绝缘子表面发生化学变化,而且还可能导致支撑高压绝缘子的金属配件的性能下降。讨论了实际绝缘子的示例以及针对电力行业的进一步工作。还提出了防止/减少水滴电晕的破坏作用的新设计概念。

著录项

  • 作者

    Hinde David Derek;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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