DocumentCode :
3014624
Title :
Calculation Model of Ice Melting Joule Heat for Overhead Lines
Author :
Gu, Xiaosong ; Wang, Hanqing ; Liu, Heyun
Author_Institution :
Sch. of Energy Sci. & Eng., Central South Univ., Changsha, China
fYear :
2010
fDate :
25-27 June 2010
Firstpage :
5079
Lastpage :
5082
Abstract :
Severe icing on overhead lines will make towers load too much to be damaged, which affects the safe operation of transmission lines. One of the most effective ways is to use the joule heat generated by electric current to carry out ice removal. Taking ice covered overhead lines as a research object, a mathematical model of joule heat was established based on the heat balance equation and a computational program was written. Comparison of the experimental results of icing wind tunnel test in University of Quebec in Canada and the computational results validated the model. The joule heat under different current intensities and impacts of atmospheric temperature, air velocity, liquid water content and mean volume diameter of supercooled water droplet under a certain current intensity were analyzed. The results show that the joule heat will be consumed a lot if the current intensity is relatively low, thus higher ice melting current intensity contributes to saving more electrical energy. Atmospheric temperature and air velocity influence the ice melting time most among the conventional meteorological parameters.
Keywords :
drops; freezing; ice; power overhead lines; supercooling; wind tunnels; Canada; University of Quebec; air velocity; atmospheric temperature; heat balance; ice melting joule heat; icing wind tunnel test; overhead lines; supercooled water droplet; transmission lines; Atmospheric modeling; Current; Ice; Load modeling; Meteorology; Resistance heating; ice melting; icing wind tunnel; joule heat; overhead lines;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Electrical and Control Engineering (ICECE), 2010 International Conference on
Conference_Location :
Wuhan
Print_ISBN :
978-1-4244-6880-5
Type :
conf
DOI :
10.1109/iCECE.2010.1229
Filename :
5631641
Link To Document :
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