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来源: | 作者: | 发布时间: 2021-03-10 | 30 次浏览 | 分享到:

  上海交通大学电气工程系 满林坤 肖登明

  云南电网有限责任公司 邓云坤

  参考文献

  [1] 张晓星,周君杰,唐炬,等.CF3I/N2混合气体局部放电特性实验研宄[J].高电压技术,2013,39(2):287-293.

  [2] 李鑫涛,林莘,徐建源,等.基于FEM-FCT法的均匀电场下SF6气体击穿特性[J].高电压技术,2014,40(10):3046-3053.

  [3] ZHAO X L, JIAO J T, LI B.The electronegativity analysis of c-C4F8 as a potential insulation substitute of SF6[J]. Plasma Science and Technology, 2016, 18(3):292-298.

  [4] 肖登明,焦俊韬,YAN Jiudun.环保型绝缘气体的灭弧能力分析[J].高电压技术,2016,42(6):1681-1687.

  [5] 李冰,邓云坤,肖登明.基于Boltzmann方程的C3F8及C3F8-N2混合气体绝缘性能[J].高电压技术,2015,41(12):4150-4157.

  [6] 张刘春,肖登明.c-c-C4Fg/CF4替代SF6可行性的SST实验分析[J].电工技术学报,2008,23(6):14-18.

  [7] JIAO J T, ZHAO X L, XIAO D M, et al. Analysis of the molecules structure and vertical electron affinity of organic gas impact on electric strength[J].Plasma Science and Technology,2016,18(5):554-559.

  [8] 曾嵘,庄池杰,余占清,等.长空气间隙放电研宄的挑战与进展[J].高电压技术,2014,40(10):2945-2955.

  [9] 张晓星,周君杰,唐炬,等.CF3I/N2混合气体局部放电特性实验研宄[J].高电压技术,2013,39(2):287-293.

  [10] 肖登明.环保型绝缘气体的发展前景[J].高电压技术,2016,42(4):1035-1046.

  [11] ZHAO X L, JIAO J T, LI B, et al.The electronegativity analysis of c-C4F8 as a potential insulation substitute of SF6 supported by National Natural Science Foundation of China(No.51337006)[J].Plasma Science and Technology,2016,18(3):292.

  [12] 吴变桃.c-C4F8及其混合气体绝缘性能的研宄[D].上海:上海交通大学,2007.

  [13] 邢卫军,张国强,李康,等.c-C4F8/N2混合气体局部放电特性实验研宄[J].中国电机工程学报,2011,31(7):119-124.

  [14] ZHANG L C, XIAO D M, ZHANG D.Applying c-C4F8/CO2 substituting SF6 as insulation medium at low E/N(<400Td)[C]//XVI International Conference on Gas Discharges and Their Applications.Xi´an,China:Xi´an Jiaotong University,2006:749-752.

  [15] 张刘春.SF6替代气体c-C4F8及其混合气体的绝缘性能研宄[D].上海:上海交通大学,2007.

  [16] WU B T,XIAO D M,LIU Z S, et al.Analysis of insulation characteristics of c-C4F8 and N2 gas mixtures by Monte Carlo method[J].Journal of Physics D: Applied Physics, 2006,39(19):4204-4207.

  [17] DENG Y K, XIAO D M.Analysis of the insulation characteristics of c-C4F8 and N2 gas mixtures by Boltzmann equation method[J].The European Physical Journal Applied Physics,2012,57(2):20801.

  [18] HIROAKI Y, OSAMU T, YUTAKA Y, et al.Analysis of discharge voltage in c-C4F8 Mixtures with N2[J].PST,2000(44/53):39-44.

  [19] YAMAMOTO O,TAKUMA T,HAMADA S,et al.Applying a gas mixtures containing c-C4F8 as an insulation medium[J].IEEE Transactions on Dielectrics and Electrical Insulation,2001,8(6):1075-1081.

  [20] 李正瀛.电负性混合气体临界击穿场强与电子附着速率的探讨[J].物理学报,1990,39(9):1400-1406.

  [21] 李康,张国强,邢卫军,等.c-C4F8及其与N2混合绝缘气体在典型故障时分解生成物的试验分析[J].高电压技术,2012,38(4):985-992.

  作者简介

  满林坤,主要从事高电压试验技术,气体放电与绝缘的研宄工作。

  邓云坤,主要从事高电压试验技术,气体放电与绝缘的研宄工作。

  肖登明,主要从事气体绝缘与气体放电、在线监测与故障诊断等方面的研宄工作。