|
|
Research on the Relationship between PM10 and Insulator Filth Characteristics |
Li Weixing, Zhang Fuchun, Liao Peng, Xie Qingyun |
Guangzhou Bureau of EHV Power Transmission Company, Guangzhou 565000 |
|
|
Abstract In order to study the relationship between PM10 and the filth characteristics of insulator, and to master the filth characteristics of the surface area, the author applies PM10, filth (salt, ash) and micro meteorological on-line monitoring technology to transmission line. The analysis and Research on the on-line monitoring data of PM10, insulator contamination (salt, ash) and environmental temperature and humidity were carried out in the field, and the relationship between the PM10 and the surface contamination degree (salt density, dust density) and the environment temperature and humidity were established. The linear correlation model was put forward. The research results show that the PM10, salt and ash dense on-line monitoring device can accurately reflect the filth condition of the insulator, and can provide accurate criterion for the line cleaning.
|
Published: 24 November 2016
|
|
|
|
Cite this article: |
Li Weixing,Zhang Fuchun,Liao Peng等. Research on the Relationship between PM10 and Insulator Filth Characteristics[J]. Electrical Engineering, 2016, 17(11): 133-135.
|
|
|
|
URL: |
http://dqjs.cesmedia.cn/EN/Y2016/V17/I11/133
|
[1] 张建兴, 律方成, 刘云鹏, 等. 高压绝缘子泄漏电流与温、湿度的灰关联分析[J]. 高电压技术, 2006(1): 40-41, 73. [2] 张威, 赵新德. 污秽绝缘子泄漏电流与湿度及盐密关系综述[J]. 云南电力技术, 2010, 38(1): 55-57. [3] 乐波, 王黎明, 毛颖科. 污秽绝缘子高频泄漏电流特征的研究[J]. 高压电器, 2005, 41(6): 401-404, 407. [4] 王雪波. 光传感器输变电设备盐密在线监测系统研究[D]. 武汉: 湖北工业大学, 2007: 21-51. [5] 叶根富, 周明, 李庚银. 绝缘子在线检测方法的比较[J]. 电力科学与工程, 2007(3): 37-40. [6] 陶元中, 包建强. 输电线路绝缘子运行技术手册[M]. 北京: 中国电力出版社, 2003. [7] 应伟国. 架空送电线路状态检修实用技术[M]. 北京:中国电力出版社, 2004. [8] 张建辉. 绝缘子污秽闪络机理及影响因素的研究[D]. 重庆: 重庆大学, 1992: 32-37. [9] 关志成, 时卫东. 绝缘子及输变电设备外绝缘[M]. 北京: 清华大学出版社, 2006. [10] 何锦雄. 输电线路绝缘子在线监测及电网防污闪分析[J]. 机电工程, 2012, 29(5): 593-595, 604. [11] Mizuno Y. Hiroaki kusada and katsuhiko naito.effect of climatic conditions oncontamination flashover voltage of insulators[J]. IEEE Transaction on Dielectrics and ElectricalInsulation, V01(3): 286-289. [12] Mereure H P. Insulators filth performance at hiigh altitude[J]. IEEE.Transaction on PowerDelivery, V01(2): 1461-1468. [13] T. Kawamura, M. Ishii, M. Akbar and ICNagai. Pressurv Dependence of DC Breakdown of Conta- minated Insulators, IEEE Tram. on Electrical Insulation, V01. EI-17, No.1, 1982: 39-45. |
|
|
|