The Development and the Field Application of the On-Line Dry Ice Washing Vehicle System

Article Preview

Abstract:

Abstract: In order to wash the polluted substation insulator quickly and safely, so as to improve the reliability of substation systems, an on-line dry ice washing system which would be applied in 220 kV voltage level was developed. Based on the results of the indoor simulation tests which provided the optimal washing parameters, the on-line dry ice system was developed. Moreover, a trial test was run in a 220 kV substation belonging to Hubei State Grid. The test results show that the vehicle system can meet the requirements of on-line washing tasks in 220 kV substation. Therefore, the washing system features advanced technology, excellent performance, and promotional value.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

58-65

Citation:

Online since:

August 2014

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2014 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] ZHANG Jing-zhi, JIANG Xing-liang, SUN Cai-xin. Present situation and prospect of research on flashover characteristics of polluted insulators[J]. Power System Technology, 2006, 30(2):35-40.

Google Scholar

[2] QIAN Zhi-yin, ZHANG Ming, XIAO Rong. Analysis on pollution flashover accidents in 500kV transmission lines of east China power grid over the years and research on optimal configuration of external insulation[J]. Power System Technology, 2007, 31(19):37-51.

Google Scholar

[3] ZHANG Yu, XIAO Rong. Analysis and considerations of 2. 20 pollution flashover accident in East China power grid[J]. East China Electric Power, 2004, 32(9): 7-22.

Google Scholar

[4] ZHENG Jin-bei, WU Li-hui. Reasons' analysis and measurement of pollution flashover on 500kV Zhao-Xi line[J]. Power Transmission Technology, 2009, No. 1:50-52.

Google Scholar

[5] YUANG Hong-bo, GUO Xian-shan. The accident and countermeasure of 110-500kV transmission line of Fushan power grid. Centrle Electric, 2005, 18(4): 55-58.

Google Scholar

[6] YAN Zhang, ZHU De-heng. High voltage insulation technology[M]. Bei-jing: China electric press, 2002: 130.

Google Scholar

[7] GU Yi, WENG Xin-hua, Yang Ru-qing. The optimum desigh of a radius variable manipulator applied in high-voltage hot-line cleaning robot[J]. Jou Rnal Of Shang-hai Jiaotong University, 2007, 11(41): 1741-1744.

Google Scholar

[8] YANG Feng, YANG Hongli, ZHANG Li. The application of on-line cleaning technology about rtansformer equipment in Jiang Xiang Grid[J]. China Electric Power Education, 2010(2): 430-431.

Google Scholar

[9] YU Huayu, XU Wencheng. The high voltage electrical equipment anti pollution flashover and on-line cleaning technology[M]. Beijing, China: China Electric Power Press, (2006).

Google Scholar

[10] XU Wen-cheng, YU Hua-yu. BRQ BRQ shaft connected to a portable high-voltage electric sweeper research[J]. China Power System, 2001, 34(12):75-80.

Google Scholar

[11] XU Wen-cheng, YU Hua-yu. CZQ-50 high pressure cleaning machine automatically charged. China Power Press, 2002, 35(1):68-70.

Google Scholar

[12] CHE Li-xin, YANG Ru-qing, GU Yi. Design of high-voltage on-line sweeping robot used in 220/330kV substation. Robot, 2005, 27(2): 102-107.

Google Scholar

[13] GU Yi, WENG Xin-hua, YANG Ru-qing. Articulated super high voltage hot-line cleaning robot HCVR-II. Shang Hai Jiao Tong Uv Press, 2006, 12(40):2173-2176.

Google Scholar

[14] Spur G, Uhlmann E.Dry-ice blasting for cleaning: process, optimization and application[C]∥International Conference on Erosive and Abrasive Wear(ICEAW).Atlanta, USA: ICEAW, 1999: 402-411.

DOI: 10.1016/s0043-1648(99)00204-5

Google Scholar

[15] GB/T 4585—2004 High voltage insulator of AC system artificial contamination test[S].Beijing, China:China Standards Press, 2004.

Google Scholar

[16] Salam M A, Ahmad H.Derivation of creepage distance in terms of ESDD and diameter of the contaminated insulator[J].IEEE Power Engineering Review, 2000, 20(9):44-45.

DOI: 10.1109/39.866870

Google Scholar

[17] SUN Cai-xin.Atmospheric environment and electrical insula-tion outside[M].Beijing, China:China Electric Press, 2002.

Google Scholar