DocumentCode
711888
Title
Study on a New and High Efficient OPGW Melting Ice Scheme
Author
Lei Yuqing ; Chen Xi ; Lv Chen ; Wang Yang ; Hou Baosu
Author_Institution
China Electr. Power Res. Inst., Beijing, China
fYear
2015
fDate
24-26 April 2015
Firstpage
480
Lastpage
484
Abstract
It is a important field how optical-fiber composite overhead ground wire (OPGW) has melted ice to avoid disasters and reduce loss, and to operate safety of transmission line. In the paper, a kind of melting ice scheme, achieved through combining new OPGW ground wire and distributed fiber-optic temperature measurement technology, is researched, to solve the problem of melting ice and monitoring temperature of ground wire. Firstly the paper introduced the basic structure of OPGW melting ice scheme, and then it is focused on distribution characteristics and variation of melting ice temperature of the new OPGW ground wire. And third, through a comprehensive analysis of the heat convection characters of ice-melting temperature field and the time characters of the melting ice, above these, we proposed a well-designed scheme combined with distributed optical-fiber temperature measuring technology and embedded OPGW structure, which can fit to effectively monitor the melting ice process of ground wire, to adjust melting strategies in real-time, and to shorten melting time. Last, we concluded the new melting ice scheme is well effective and a improved efficiency.
Keywords
convection; de-icing; ice; melting; power overhead lines; temperature measurement; OPGW melting ice scheme; distributed fiber-optic temperature measurement technology; heat convection analysis; optical-fiber composite overhead ground wire temperature monitoring; transmission line safety; Ice; Monitoring; Optical fiber cables; Power cables; Temperature distribution; Temperature measurement; Wires; OPGW melthing ice; distributed fiber-optic temperature measurement; efficiency of melting ice; embedded OPGW cable; temperature characters of melting ice;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Science and Control Engineering (ICISCE), 2015 2nd International Conference on
Conference_Location
Shanghai
Print_ISBN
978-1-4673-6849-0
Type
conf
DOI
10.1109/ICISCE.2015.111
Filename
7120651
Link To Document