首页> 外文会议>International Conference on Machinery, Materials Science and Energy Engineering >Studies on the Discharge Characteristics of CO_2 in the Plate-Plate and Sphere-Sphere Electrodes
【24h】

Studies on the Discharge Characteristics of CO_2 in the Plate-Plate and Sphere-Sphere Electrodes

机译:板材板和球形电极CO_2的放电特性研究

获取原文

摘要

Aiming at investigating the insulation characteristics of CO_2, both power frequency withstands voltage and lightning impulse test were performed in the present work, at an ambient temperature and a certain relative humidity. Two types of electrodes, plate-plate and sphere-sphere, were selected while the gap of the electrodes and the gas pressure varied in the tests. The experimental results indicate that the insulation strength of CO_2 (with a purity of 99.99%) is improved with the increase of electrode gap and gas pressure, which is in good consistence with the variation tendency described in the classical breakdown theory. In power frequency withstand voltage test, the insulation characteristics of CO_2 is enhanced significantly when the gap pressure reaches 0.6 MPa. In lightning impulse test, the insulation characteristics of CO_2 at 0.5 and 0.6 MPa are almost identical with each other. In a uniform electric field, the polarity effect in lightning impulse tests is minor. Contrarily, the polarity effect is remarkable in a quasi-uniform electrode, specifically the breakdown voltage of reverse impulse is far less than it of forward impulse and their difference reduces with the decreasing gap. In a conclusion, when applied in a 110kV device, the pressure of insulating gas CO_2 should be not less than 0.6 MPa.
机译:旨在调查CO_2的绝缘特性,在本作温度和某种相对湿度下,在本作工作中进行电力频率耐电压和雷电脉冲试验。选择两种类型的电极,板块和球形,同时在电极的间隙和试验中变化的气体压力变化。实验结果表明,随着电极间隙和气体压力的增加,CO_2的绝缘强度(纯度为99.99%),这与经典击穿理论中描述的变化趋势良好。在功率频率耐压测试中,当间隙压力达到0.6MPa时,CO_2的绝缘特性显着提高。在雷电脉冲测试中,CO_2的绝缘特性为0.5和0.6MPa彼此几乎相同。在均匀的电场中,避雷脉冲测试中的极性效应是较小的。相反,在准均匀的电极中,极性效应显着,特别是反向脉冲的击穿电压远小于前向脉冲的突破,并且它们的差异随着差距的降低而降低。在结论中,当施加在110kV器件中时,绝缘气体CO_2的压力应不小于0.6MPa。

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