DocumentCode
1482121
Title
Test results of full-scale HTS cable models and plans for a 36 kV, 2 kArms utility demonstration
Author
Willen, D.W.A. ; Hansen, F. ; Rasmussen, C.N. ; Daumling, M. ; Schuppach, O.E. ; Hansen, Erik ; Baerentzen, J. ; Svarrer-Hansen, B. ; Traeholt, Chresten ; Olsen, S.K. ; Ramussen, C. ; Veje, E. ; Jensen, K.H. ; Tønnesen, Ø ; Østergaard, J. ; Mikkelsen, S.D
Author_Institution
NKT Res. A/S, Brondby, Denmark
Volume
11
Issue
1
fYear
2001
fDate
3/1/2001 12:00:00 AM
Firstpage
2473
Lastpage
2476
Abstract
Cable systems using high-temperature superconducting (HTS) tapes are nearing technical feasibility. Several large-scale demonstrations are under way. This article summarizes the advancements and status of a development project aimed at demonstrating a 36 kV, 2 kA RMS AC cable system through installing a 30 m long full-scale functional model in a power utility substation. The HTS cable line is designed to link two medium-voltage transformer stations in an urban environment. The expected benefits of such a system include reduced energy loss, ease of installation, increased power rating in a small cross section, and insensitivity to the surrounding soil conditions. Results will be presented from tests on several 2 kA-class AC conductors. Electrical losses below 1 W/m at 2 kArms have been obtained in these cable conductors. The cable system consists of terminations, three HTS cables with conventional room-temperature dielectric and stress cones, and a closed-loop circulating cooling system maintaining the temperature between 74 and 84 K. Critical issues before the commercialization of this technology is the improvement of the thermal insulation, the reliability and maintainability of the cooling system, and the reduction of materials costs
Keywords
cooling; high-temperature superconductors; power cable testing; superconducting cables; superconducting tapes; thermal insulation; transformer substations; 2 kA; 30 m; 36 kV; 74 to 84 K; HTSC power cables; closed-loop circulating cooling; commercialization; cooling system; energy loss; high-temperature superconducting tapes; installation; losses; maintainability; medium-voltage transformer stations; power rating; power utility substation; reliability; technical feasibility; thermal insulation; Conductors; Cooling; High temperature superconductors; Large-scale systems; Maintenance; Power system modeling; Superconducting cables; Superconducting films; Testing; Thermal stresses;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/77.920364
Filename
920364
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