DocumentCode :
26926
Title :
Development of a 66 kV-5 kArms Class HTS Power Cable Using REBCO Tapes With High Critical Current
Author :
Daibo, M. ; Watanabe, K. ; Akashi, K. ; Hidaka, H. ; Nagata, M. ; Yoshida, M. ; Iijima, Y. ; Itoh, M. ; Saitoh, T. ; Maruyama, O. ; Ohkuma, T.
Author_Institution :
Fujikura Ltd., Chiba, Japan
Volume :
25
Issue :
3
fYear :
2015
fDate :
Jun-15
Firstpage :
1
Lastpage :
5
Abstract :
High temperature superconducting (HTS) cables are able to achieve large power capacity and low-loss power transmission. Fujikura Ltd. worked on developing a 66 kV-5 kArms HTS power cable using high critical current (Ic) REBCO tapes in the Japanese national project. One of the technical targets in this project was to reduce AC loss to less than 2 W/m at 5 kArms. REBCO tapes with 240 A/4 mm-width of Ic at 77 K, self field, which were fabricated by ion-beam-assisted-deposition (IBAD) and pulsed laser deposition (PLD) methods, were applied to the HTS power cable. As a result, we succeeded in developing the 20 m-long 66 kV-5 kArms HTS power cable. The measured AC loss was achieved 1.4 W/m at 77 K and 1.0 W/m at 67 K at 5 kArms. On the other hand, it is considered that the eddy current loss of the stainless-steel cryostat pipe of HTS cable become obvious in the case of the single-core cable with the large current capacity. It is suggested that the eddy current loss of the stainless-steel cryostat pipe is due to the internal magnetic flux. Therefore, the eddy current loss of the stainless-steel cryostat pipe as well as uniform current distribution of HTS conductor and shield layer should be taken into account for designing the winding direction and pitch of HTS conductor and shield layer of HTS cable. In this work, the measured eddy current loss of the stainless-steel cryostat pipe is also compared with the calculated one.
Keywords :
current distribution; eddy current losses; high-temperature superconductors; ion beam assisted deposition; power cables; pulsed laser deposition; superconducting cables; superconducting tapes; AC loss; HTS conductor; HTS power cable; Japanese national project; REBCO tapes; critical current; current capacity; eddy current loss; high temperature superconducting cables; internal magnetic flux; ion-beam-assisted-deposition; low-loss power transmission; power capacity; pulsed laser deposition; shield layer; single-core cable; size 20 m; stainless-steel cryostat pipe; temperature 77 K; uniform current distribution; voltage 66 kV; Conductors; Current measurement; Eddy currents; High-temperature superconductors; Loss measurement; Power cables; Superconducting cables; Eddy current; High temperature superconductor; Power cable; REBCO; eddy current; high temperature superconductor (HTS); power cable;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2014.2366996
Filename :
6945884
Link To Document :
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