DocumentCode :
1302650
Title :
Ampacity Calculations for Cables in Shallow Troughs
Author :
Anders, George J. ; Coates, Mark ; Chaaban, Mohamed
Author_Institution :
Dept. of Electr. Eng., Tech. Univ. of Lodz, Lodz, Poland
Volume :
25
Issue :
4
fYear :
2010
Firstpage :
2064
Lastpage :
2072
Abstract :
This paper presents the findings of an investigation concerning a calculation method for current-carrying capability (ampacity) of cables located in a shallow trough. The investigations proceeded in two parallel directions. On the one hand, an extensive search of published and unpublished records dealing with the subject was performed. The second path of investigation involved studies applying finite element analysis. Sensitivity analysis was also performed. In both cases, the recommendation is to use the same approach for determining the current rating of cables in a trough. They both use the cable rating in “free airv as the basis and add an extra thermal resistance to take into account the effect of the trough. Based on the investigation of the previous work and the finite element analysis, two new equations were developed for the external thermal resistance. The proper choice would depend on the field or laboratory tests that would confirm our findings or lead to the modifications of the rating formulae. In the absence of any additional information, it is recommended that the calculations be performed using one of three methods listed below. The methods are listed from the most to the least conservative. 1) method given by a new equation based on the finite element analysis; 2) method given in the IEC standard 60287; 3) method given by a new analytical equation presented in this paper. The comparison of the calculated results with the available test data shows that the method 3) above, the least conservative one, gives a good agreement with the measured values.
Keywords :
IEC standards; finite element analysis; power cables; thermal resistance; IEC standard 60287; ampacity calculations; cable rating; current-carrying capability; external thermal resistance; finite element analysis; shallow troughs; Conductivity; IEC standards; Mathematical model; Power cables; Solar radiation; Thermal resistance; Ampacities; cable rating; power cables; shallow troughs; utility sidewalk;
fLanguage :
English
Journal_Title :
Power Delivery, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8977
Type :
jour
DOI :
10.1109/TPWRD.2010.2051239
Filename :
5556034
Link To Document :
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