王巨丰, 黄上师, 韩力, 闫仁宝, 徐宇恒. 35 kV线路用自灭弧防雷间隙及工频续流遮断试验[J]. 电网技术, 2021, 45(3): 1208-1213. DOI: 10.13335/j.1000-3673.pst.2019.1815
引用本文: 王巨丰, 黄上师, 韩力, 闫仁宝, 徐宇恒. 35 kV线路用自灭弧防雷间隙及工频续流遮断试验[J]. 电网技术, 2021, 45(3): 1208-1213. DOI: 10.13335/j.1000-3673.pst.2019.1815
WANG Jufeng, HUANG Shangshi, HAN Li, YAN Renbao, XU Yuheng. Study on Power Frequency Follow Current Interruption Test of Self Arc-extinguishing Lightning Protection Gap in 35 kV Distribution Lines[J]. Power System Technology, 2021, 45(3): 1208-1213. DOI: 10.13335/j.1000-3673.pst.2019.1815
Citation: WANG Jufeng, HUANG Shangshi, HAN Li, YAN Renbao, XU Yuheng. Study on Power Frequency Follow Current Interruption Test of Self Arc-extinguishing Lightning Protection Gap in 35 kV Distribution Lines[J]. Power System Technology, 2021, 45(3): 1208-1213. DOI: 10.13335/j.1000-3673.pst.2019.1815

35 kV线路用自灭弧防雷间隙及工频续流遮断试验

Study on Power Frequency Follow Current Interruption Test of Self Arc-extinguishing Lightning Protection Gap in 35 kV Distribution Lines

  • 摘要: 为了验证35 kV线路用自灭弧防雷间隙在继电保护动作前的灭弧有效性,因此对其工频续流遮断能力进行研究。对自灭弧防雷间隙进行灭弧机理分析,明确其多断口灭弧结构的性能。依照国家标准中雷电冲击放电试验和空气间隙距离的规定进行试验,确定其击穿放电电压应大于325.1 kV,空气间隙距离约376 mm,额定电压为40.5 kV。根据IEC标准搭建了工频续流遮断试验平台。该试验平台能够产生1.2/50 μs的标准雷电冲击电压和10个完整周期且频率为50 Hz左右的工频电压,并具有选相触发能力。工频续流遮断试验结果表明:35 kV自灭弧防雷间隙在1.5 ms附近产生的气流作用于电弧最为强烈,在3 ms内熄灭峰值为1.289 kA的工频续流,且不会发生电弧重燃现象。

     

    Abstract: In order to verify arc-extinguishing effectiveness of self arc-extinguishing lightning protection gap in 35 kV lines before relay protection action, its power frequency current interruption capability was studied. The performance of its multi-fracture structure was determined by analyzing the arc- extinguishing mechanism of self arc-extinguishing lightning protection gap. The test was carried out in accordance with the regulation of lightning impulse discharge test and air gap distance in Chinese national standards, i.e. breakdown discharge voltage greater than 325.1 kV, air gap distance approximately 376 mm, and rated voltage 40.5 kV. According to IEC standards, a test platform of power frequency follow current interruption is built. The test platform could generate 1.2/50 μs standard lightning impulse voltage and 10 full-cycle power frequency voltage of approximately 50 Hz, and had phase selection trigger ability. The results of the power frequency follow current interruption test showed that the airflow produced by 35 kV self arc-extinguishing lightning protection gap acted most strongly on the arc at approximately 1.5 ms, and the power frequency follow current with 1.289 kA peak value was extinguished in approximately 3 ms without arc reignition phenomenon.

     

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