DocumentCode :
1219655
Title :
Quench Characteristics of an NbTi CICC With Non-Uniform Current Distribution
Author :
Bansal, Gourab ; Seo, Kazutaka ; Yanagi, Nagato ; Hemmi, Tsutomu ; Takahata, Kazuya ; Mito, Toshiyuki ; Sarkar, Biswanath ; Saxena, Yogesh C.
Author_Institution :
Nat. Inst. for Fusion Sci., Grad. Univ. for Adv. Studies, Toki
Volume :
18
Issue :
2
fYear :
2008
fDate :
6/1/2008 12:00:00 AM
Firstpage :
1245
Lastpage :
1248
Abstract :
The effect of non-uniform current distribution (NUCD) on stability and quench characteristics of an NbTi/Cu cable-in-conduit conductor (CICC) with non-insulated or bare strands has been investigated by artificially introducing NUCD among the strands using a sophisticated current feeder system with thin-film resistive heaters. The stability margin or minimum quench energy (MQE) has been found to decrease significantly, especially in the transition region between so-called well-cooled and ill-cooled regions, due to the introduction of NUCD. The experimental results of stability margin with uniform current distributions have been compared with numerical calculations using the 1-D finite element code GANDALF, whereas the non-uniform current distribution cases have been treated by another code developed by the authors, which models the last two twisting stage of the conductor with uniform contact resistances between sub-cables. The numerical calculation results also simulate the similar behaviors as found in experiments. The quench propagation velocities deduced from voltage tap signals are also discussed.
Keywords :
copper; current distribution; electric conduits; finite element analysis; niobium alloys; quenching (thermal); superconducting cables; titanium alloys; 1-D finite element code; cable-in-conduit conductor; contact resistances; current feeder system; ill-cooled regions; minimum quench energy; nonuniform current distribution; numerical calculation; quench characteristics; stability; thin-film resistive heaters; well-cooled regions; Cable-in-conduit conductor; non-uniform current distribution; quench; stability;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2008.922279
Filename :
4520399
Link To Document :
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