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Surface charge accumulation on 500kV cone-type GIS spacer under residual DC voltage

机译:残余直流电压下500kV锥型GIS垫片上的表面电荷积累

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摘要

In recent years, GIS compact design has gradually been recognized and adopted by the industry. In the trend of the compact design, the insulation performance of the cone-type spacer is getting more and more attention by GIS manufacturers and grid operators and maintenance departments. In particular, under the action of DC residual pressure, the insulation properties of cone-type spacer become the focus of attention of all parties. Based on the field equipment operating conditions, the experimental study of DC residual voltage for the true cone-type spacer insulation performance is significant. In order to obtain the proposed pre-stressed time of DC voltage and distributions of surface charge, for the insulation test of 500 kV cone-type spacer under lightning impulse with DC voltage superimposed. A full scale surface charge measurement platform is build up for 500 kV GIS spacer. Then, long-term DC voltage experiments were carried out to obtain the distributions of surface charge on spacer in stationary state under different voltages. Moreover, the saturation time of surface charge accumulation under different DC electric stress is calculated and discussed. The study results show that (1) the distribution of surface charge on spacer is not uniform. It can be observed that on most areas of 500 kV spacer concave surface is dominated by the electric conduction through the volume with positive charges. (2) The time constant of surface charge accumulation decreases with the residual DC voltage amplitude, it can be estimated that the saturation time of surface charge accumulation on 500 kV cone-type spacer is about 23 h for the residual DC voltage reach to 1.0 p.u. The study results are thought to be helpful to the insulation test of 500 kV conetype spacer under impulse voltage with a superimposed residual DC voltage.
机译:近年来,GIS紧凑设计已逐渐被业界所认可和采用。在紧凑设计的趋势下,锥形间隔器的绝缘性能越来越受到GIS制造商,电网运营商和维护部门的关注。特别地,在直流残余压力的作用下,锥形间隔物的绝缘性能成为各方关注的焦点。根据现场设备的工作条件,直流残余电压对于真正的锥形隔套绝缘性能的实验研究具有重要意义。为了获得建议的直流电压预应力时间和表面电荷的分布,在叠加有直流电压的雷电冲击下对500 kV锥形隔圈进行绝缘测试。为500 kV GIS隔离器构建了一个完整的表面电荷测量平台。然后,进行了长期的直流电压实验,得到了不同电压下固定状态下隔板上表面电荷的分布。此外,计算并讨论了不同直流电应力下表面电荷积累的饱和时间。研究结果表明:(1)隔离子表面电荷的分布不均匀。可以观察到,在大多数500 kV隔离物的区域,凹面的表面主要是通过带正电荷的体积的导电。 (2)表面电荷积累的时间常数随着残余DC电压幅度的增加而减小,可以估计出,对于500 kV锥形间隔物,表面电荷积累的饱和时间大约为23 h,而残余DC电压达到1.0p.u。研究结果被认为有助于在500 kV锥形隔圈在冲击电压和叠加的残余DC电压下的绝缘测试。

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  • 作者单位

    Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University Beinong Road #2, Beijing, 102206, People’s Republic of China;

    Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University Beinong Road #2, Beijing, 102206, People’s Republic of China;

    Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University Beinong Road #2, Beijing, 102206, People’s Republic of China;

    Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University Beinong Road #2, Beijing, 102206, People’s Republic of China;

    Key Laboratory of Alternate Electrical Power System with Renewable Energy Sources Beijing Key Laboratory of High Voltage & EMC North China Electric Power University Beinong Road #2, Beijing, 102206, People’s Republic of China;

    Pinggao Group Co., Ltd Pingdingshan 467001, People’s Republic of China;

    Pinggao Group Co., Ltd Pingdingshan 467001, People’s Republic of China;

    Pinggao Group Co., Ltd Pingdingshan 467001, People’s Republic of China;

    High Voltage Research Department China Electric Power Research Institute No.15, Xiaoying East Road, Beijing, 100192, People’s Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Probes; Electric potential; Voltage measurement; Charge measurement; Gas insulation; Electric fields;

    机译:探头;电势;电压测量;电荷测量;气体绝缘;电场;

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