王平, 陈雅茜, 姚修远, 丁玉剑, 耿江海, 律方成, 蒋玲, 时卫东. 海拔2200m地区正极性操作冲击下大尺寸球–板间隙放电转化特性[J]. 中国电机工程学报, 2023, 43(15): 6112-6123. DOI: 10.13334/j.0258-8013.pcsee.220342
引用本文: 王平, 陈雅茜, 姚修远, 丁玉剑, 耿江海, 律方成, 蒋玲, 时卫东. 海拔2200m地区正极性操作冲击下大尺寸球–板间隙放电转化特性[J]. 中国电机工程学报, 2023, 43(15): 6112-6123. DOI: 10.13334/j.0258-8013.pcsee.220342
WANG Ping, CHEN Yaxi, YAO Xiuyuan, DING Yujian, GENG Jianghai, LYU Fangcheng, JIANG Ling, SHI Weidong. Discharge Conversion Characteristics of Large Size Sphere-plane Gap Under Positive Switching Impulse Voltage at Altitude of 2200m[J]. Proceedings of the CSEE, 2023, 43(15): 6112-6123. DOI: 10.13334/j.0258-8013.pcsee.220342
Citation: WANG Ping, CHEN Yaxi, YAO Xiuyuan, DING Yujian, GENG Jianghai, LYU Fangcheng, JIANG Ling, SHI Weidong. Discharge Conversion Characteristics of Large Size Sphere-plane Gap Under Positive Switching Impulse Voltage at Altitude of 2200m[J]. Proceedings of the CSEE, 2023, 43(15): 6112-6123. DOI: 10.13334/j.0258-8013.pcsee.220342

海拔2200m地区正极性操作冲击下大尺寸球–板间隙放电转化特性

Discharge Conversion Characteristics of Large Size Sphere-plane Gap Under Positive Switching Impulse Voltage at Altitude of 2200m

  • 摘要: 在我国中西部海拔超2000m地区,曲率半径达0.25~ 1m的屏蔽球金具在特高压直流输电换流站阀厅中应用广泛,其与地面、墙壁形成的球–板间隙直接影响整个输电系统的绝缘安全及经济成本,因此研究高海拔地区大尺寸球–板长间隙放电转化特性具有重要的理论意义和工程价值。该文在海拔2200m的青海特高压试验基地开展3m间隙距离下,曲率半径为0.30、0.65、0.80m的球–板间隙正极性操作冲击放电试验;对比分析3种电极结构各放电阶段的瞬时光功率、空间电场强度、高电位电流等光电特征物理参量;计算其初始流注注入电荷量、电场强度空间分布、初始流注长度、流注茎温度等物理特征值;研究间隙结构对大尺寸电极放电转化特性的影响。结果表明:间隙距离一致,球电极曲率半径越大时,初始流注长度越长、产生空间电荷量越多、流注茎温度上升速率越快、流注逐渐成为放电过程的主导。研究结果可为今后高海拔地区换流站阀厅选择合适的屏蔽结构、有效增强间隙操作冲击绝缘水平及减小设备尺寸等提供参考。

     

    Abstract: In the central and western regions of China with an altitude of over 2000m, the shielding sphere fittings with a curvature radius of 0.25~1m are widely used in the valve hall of UHVDC converter stations. The sphere-plane gap formed with the ground and wall directly affects the insulation safety and economic cost of the whole transmission system. Therefore, it is of great theoretical significance and engineering value to study the discharge conversion characteristics of large size sphere-plane gap at a high altitude. In this paper, the positive switching impulse voltage discharge tests of sphere-plane gaps with curvature radius of 0.30, 0.65 and 0.80m are carried out under the gap distance of 3m at the Qinghai UHV test base at an altitude of 2200m. The photoelectric physical parameters such as instantaneous optical power, spatial electric field strength and high potential current at each discharge stage of the three types of electrode structures are compared and analyzed. The physical characteristic values of the initial injected charge, spatial distribution of electric field intensity, initial streamer length and stem temperature are calculated. The effect of gap structure on discharge conversion characteristics of large size electrode is studied. The analysis results show that when the gap distance is the same, the larger the electrode curvature radius is, the longer the initial streamer length is, the more space charge is generated, the faster the temperature rise rate of the stem is, and the streamer gradually becomes the dominant process in the discharge process. The research results of this paper lay a foundation for selecting suitable shielding structure for valve halls of converter stations in high altitude areas, effectively enhancing the impact insulation level of clearance operation and reducing the size of equipment.

     

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