DocumentCode :
1541244
Title :
Thermal Analysis of Cables in Unfilled Troughs: Investigation of the IEC Standard and a Methodical Approach for Cable Rating
Author :
Terracciano, Matthew ; Purushothaman, S. ; de Leon, Francisco ; Farahani, A.V.
Author_Institution :
Polytech. Inst. of New York Univ., Brooklyn, NY, USA
Volume :
27
Issue :
3
fYear :
2012
fDate :
7/1/2012 12:00:00 AM
Firstpage :
1423
Lastpage :
1431
Abstract :
A robust algorithm, based on relaxation, is proposed for the implementation of the IEC Standard method for rating cables installed in unfilled troughs. Through hundreds of finite-element simulations, the validity range of the standardized equations is established. Studies are performed by varying the following parameters over a wide range: trough size, ambient air temperature, trough aspect ratio, position of cables, cable operating temperature, and intensity of solar radiation. A physically consistent analog thermal-electric equivalent circuit is proposed for the thermal rating of cables installed in unfilled troughs. In contrast with the standards, the equivalent circuit offers a methodological approach that considers all heat-transfer phenomena involved in cables in troughs, for example, the conduction of heat through the cable layers, the heat convection and radiation inside the trough, the conduction in the trough itself and soil, the convection to the surface air, and the solar radiation. Extensive finite-element verification in steady state and transients demonstrates the accuracy of the proposed equivalent circuit.
Keywords :
IEC standards; electric conduits; finite element analysis; power cables; thermal analysis; IEC standard; ambient air temperature; analog thermal-electric equivalent circuit; cable layer; cable operating temperature; cable position; cable rating; cable thermal analysis; finite element simulation; heat transfer phenomena; solar radiation intensity; standardized equations; thermal rating; trough aspect ratio; trough size; unfilled troughs; Heating; IEC standards; Power cables; Soil; Solar radiation; Steady-state; Transient analysis; Ampacity; cable thermal rating; finite elements; intensity of solar radiation; unfilled troughs;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2012.2192138
Filename :
6218216
Link To Document :
بازگشت