Abstract:According to the characteristics of 750kV transformer outlet device insulation structure, research of the technology was carried out. 2D and 3D engineering oriented simulated model of the key parts was established based on the Electro v6.2 and ElecNet7.0 software to analyse the safe margin. The main technology problems such as definition of the electronic finite model, 2D and 3D electronic analysis of the outlet device, and optimize design of the insulated structure was introduced. The electronic field calculation of the 750kV outlet device and the analysis of the safe margin were studied. Insulation defect was avoid by the optimize design of the electrode and insulation structure. The 750kV outlet device proposed in this paper was applied to a lot of engineering projects; the reliability of the homemade 750kV outlet device was validated by the experiment and performance of many products.
[1] 国家电网公司. 国家电网公司750kV输变电示范工程建设总结[M]. 北京:中国电力出版社, 2006. [2] 丁新良. 750kV电压等级是西北电网发展的必然选择[J]. 电网技术, 2002, 26(3):23-26. Ding Xinliang. 750kV —an inevitable choice of higher voltage grade for northwest power grid in China[J]. Power System, 2002, 26 (3): 23-26. [3] 梁旭明. 750kV交流输变电工程设备的国产化[J]. 电力建设, 2006, 27(8): 1-3. Lang Xuming. Localization of 750kV AC transmission and distribution engineering devices[J]. Electric Power Construction, 2006, 27(8): 1-3. [4] 阮全荣, 施围. 800kV升压变压器工程设计研究[J]. 高压电器, 2006, 42(3): 161-163. Ruan Quanrong, Shi Wei. Study on engineering design of 800kV step-up transformer[J]. High Voltage Apparatus, 2006, 42(3): 161-163. [5] 路长柏. 电力变压器绝缘技术[M]. 哈尔滨:哈尔滨工业大学出版社, 1997. [6] 谢毓城. 电力变压器手册[M]. 北京:机械工业出版社, 2003. [7] 宣白云, 陈震. 变压器引线绝缘成型件工艺研究[J]. 泰州职业技术学报, 2008, 8(1): 7-9. Xuan Baiyun, Chen Zhen. Research on process of transformer wire insulation molding[J]. Journal of Taizhou Polytechnical Institute, 2008, 8(1): 7-9. [8] 陈玉庆. 大型变压器漏磁场、电场和应力场有限元分析[D]. 济南:山东大学, 2005. [9] 葛为民. 变压器电场分析方法研究[J]. 黑龙江电力, 2005, 27(2):87-90. Ge Weimin. Study on a analysis method of transformer electric field[J]. Heilongjiang Electric Power, 2005, 27 (2): 87-90. [10] 平学伟. 电磁场中的快速有限元分析[D]. 南京:南京理工大学, 2008. [11] 葛为民. 变压器电场分析再议[J]. 常州工学院学报, 2004, 17(6): 34-37. Ge Weimin. Re-analysis of transformer electric field[J]. Journal of Changzhou Institute of Technology, 2004, 17(6): 34-37. [12] 张喜乐, 王建民. 超高压直流换流变压器阀侧引出线电场的数值分析[J]. 变压器, 2009, 46(7): 1-4. Zhang Xile, Wang Jianmin. Numerical analysis of electric field in valve side lead-out wire for UHVDC converter transformer[J]. Transformer, 2009, 46(7): 1-4. [13] 颜威利, 杨庆新. 电气工程电磁场数值分析[M]. 北京:机械工业出版社, 2005. [14] 程志光, 高桥则雄, 博扎德·弗甘尼, 等. 电气工程电磁热场模拟与应用[M]. 北京:科学出版社, 2009. [15] 李云阁. 750kV变压器现场工频感应耐压和局部放电试验[J]. 电网技术, 2007, 31(10):64-68. Li Yunge. On-site power frequency induced overvoltage withstand test and partial-discharge test for 750kV transformers[J]. Power System Technology, 2007, 31(10): 64-68. [16] GB1094.3-2003, 电力变压器第3部分:绝缘水平、绝缘试验和外绝缘空气间隙[S]. [17] GB1094.3-1985, 电力变压器第3部分:绝缘水平和绝缘试验[S]. [18] 陈庆国, 张杰, 高源, 等. 混合电场作用下换流变压器阀侧绕组电场分析[J]. 高电压技术, 2008, 34(3): 484-488. Chen Qingguo, Zhang Jie, Gao Yuan, et al. Analysis of complex electrical field on valve side winding of converter transformer[J]. High Voltage Engineering, 2008, 34(3): 484-488. [19] 王铁街, 丁中民. 棒-板油纸复合绝缘的电场数值计算[J]. 高电压技术, 2009, 35(4): 809-813. Wang Tiejie, Ding Zhongmin. Numerical computation of electric field of rod-plane oil-paper insulation[J]. High Voltage Engineering, 2009, 35(4): 809-813. [20] 欧阳鹏, 王建辉. 基于ElecNet的汽轮发电机定子绕组端部结构建模及电场计算[J]. 大电机技术, 2009(1): 14-18. Ou Yangpeng, Wang Jianhui. Precise modeling and computation of electric field of turbine generator stator end windings based on ElecNet[J]. Large Electric Machine and Hydraulic Turbine, 2009(1): 14-18. [21] 闵越, 肖静. 变压器三维电场分析方法探讨[J]. 山东大学学报 (工程科学), 2007, 37(6): 54-57. Min Yue, Xiao Jing. Analysis method of the 3-D transformer electric field[J]. Journal of Shandong Unversity(Engineering Science), 2007, 37(6): 54-57.