首页> 外文会议>International Conference on Electrical Materials and Power Equipment >Influence of metallic contamination on surface charge distribution of a 200kV cone-type insulator
【24h】

Influence of metallic contamination on surface charge distribution of a 200kV cone-type insulator

机译:金属污染对200kV锥型绝缘子表面电荷分布的影响

获取原文

摘要

In the operation of HVDC GIL (Gas-insulated Transmission Line), cone-type insulator can separate SF chambers, support the HV conductor and play the role of electric insulation. However, with long-term applied HVDC voltage, charges are prone to accumulate on the insulator surface, which can lead to the decrease of flashover voltage and threaten the stability of power system. Besides, the existence of metallic particles inside the GIL chamber, especially those attached along the insulator surface, can result in a more serious charge accumulation. Therefore, it is necessary to measure the surface charge distribution of clean and metal particle contaminated cone-type insulator in order to analyze its insulation properties under HVDC voltage. In this paper, a 3D 4-axis manipulating system is built to control the position of a capacitive probe to measure the surface potential of a ±200kV cone-type insulator. The probe keeps perpendicular to the concave surface at an identical distance and takes measurement along a pre-set trajectory after the applied voltage has been interpreted. Surface charge distributions of clean and metallic contaminated cone-type insulators are obtained successively. Influences of voltage polarity and application time are equally studied. The results show that metallic contamination has an enormous influence on surface charge polarities and distribution. For a clean surface, negative charge accumulates along the insulation surface under positive HVDC voltage; while under negative HVDC voltage, charges of both polarities are detected in different areas. For an insulator surface with metallic contamination, charge of the same polarity as the applied voltage is found to be significant near the contamination area. Analyses are made from the perspective of electric field distortion and partial discharge caused by the metallic contamination.
机译:在HVDC GIL(气体绝缘传输线)的操作中,锥形绝缘体可以分离SF腔室,支撑HV导体并发挥电绝缘的作用。然而,通过长期施加的HVDC电压,电荷容易累积在绝缘体表面上,这可能导致闪络电压的降低并威胁到电力系统的稳定性。此外,吉尔室内的金属颗粒,尤其是沿着绝缘体表面附着的金属颗粒,可以导致更严重的电荷累积。因此,需要测量清洁和金属颗粒污染的锥形锥形绝缘体的表面电荷分布,以便在HVDC电压下分析其绝缘性能。在本文中,建立了3D 4轴操纵系统以控制电容探头的位置测量±200kV锥形绝缘子的表面电位。探针以相同的距离保持垂直于凹面表面,并且在施加电压被解释之后沿着预先设定的轨迹进行测量。连续获得清洁和金属污染锥形绝缘体的表面电荷分布。电压极性和施加时间的影响同样研究。结果表明,金属污染对表面电荷极性和分布具有巨大影响。对于清洁表面,负电荷在正高压电压下沿绝缘表面积聚;在负HVDC电压下,在不同区域中检测到两个极性的电荷。对于具有金属污染的绝缘体表面,发现与施加的电压相同的极性的电荷在污染区域附近具有重要意义。通过金属污染引起的电场变形和局部放电的角度来分析。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号