DocumentCode :
850861
Title :
Experimental evaluation of AC losses in superconducting multifilamentary wires for 50/60 Hz use exposed to a magnetic field with arbitrary angle with the wire axis
Author :
Kanetaka, H. ; Ueda, H. ; Eguchi, Y. ; Iwakuma, M. ; Funaki, K. ; Takeo, M. ; Yamafuji, K. ; Miyake, S. ; Kumano, T. ; Ichihara, M.
Author_Institution :
Kyushu Univ., Fukuoka, Japan
Volume :
5
Issue :
2
fYear :
1995
fDate :
6/1/1995 12:00:00 AM
Firstpage :
737
Lastpage :
740
Abstract :
In multiple twisted superconducting cables exposed to an external AC transverse magnetic field, a component of magnetic field parallel to the strand axis due to the twisting structure of the cables causes an additional AC loss (longitudinal AC loss) in the strands. The authors experimentally evaluate the longitudinal AC loss by an equivalent measurement with short samples of the strands exposed to an oblique magnetic field to the strand axis. The total loss obtained at 60 Hz was equivalent to a direct sum of the hysteresis loss, the coupling-current loss for the transverse component and the additional loss for the longitudinal one. In triple twisted superconducting cables composed of insulated strands, measured AC losses could be also quantitatively explained in the same manner as for the short samples. These results suggest that the longitudinal loss may be dominant in an AC magnetic field with relatively large amplitude along with the coupling-current losses inside and among strands. The authors also discuss an optimum condition for the twist pitch of the strand to reduce the total AC loss of the strands in the cable.<>
Keywords :
losses; magnetic fields; multifilamentary superconductors; niobium alloys; power cable testing; superconducting cables; titanium alloys; 50 Hz; 60 Hz; AC losses; NbTi; coupling-current loss; equivalent measurement; external AC transverse magnetic field; hysteresis loss; insulated strands; multiple twisted superconducting cables; superconducting multifilamentary wires; Cable insulation; Conductivity; Loss measurement; Magnetic field measurement; Multifilamentary superconductors; Niobium compounds; Power cables; Superconducting cables; Superconducting filaments and wires; Titanium compounds;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.402653
Filename :
402653
Link To Document :
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