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Preliminary Design Study on Non-twisted HTS Conductor for Fusion Applications

Authors
Oh, S.Kim, H.W.Nam, S.Chu, Y.Oh, D.K.Choi, H.Lee, J.T.Kim, W.Jeong, Y.S.Chang, H.Lee, J.Hahn, S.
Issue Date
1-Aug-2023
Publisher
Institute of Electrical and Electronics Engineers Inc.
Keywords
Conductors; Copper; Fusion Magnet; Heating systems; High Temperature Superconductor; High-temperature superconductors; Hysteresis Loss; Magnetic hysteresis; Stacks-in-Conduit Conductor; Superconducting magnets; Toroidal magnetic fields
Citation
IEEE Transactions on Applied Superconductivity, v.33, no.5, pp.1 - 5
Journal Title
IEEE Transactions on Applied Superconductivity
Volume
33
Number
5
Start Page
1
End Page
5
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/31132
DOI
10.1109/TASC.2023.3262490
ISSN
1051-8223
Abstract
Full transposition of superconducting wires within a conductor may not be a requirement for high temperature superconductor (HTS) magnet for fusion applications. Already, conduction-cooled 20 T model coil built with non-transposed HTS stacks has been demonstrated by Commonwealth Fusion Systems (CFS). Here, we discuss 3 possible stacked HTS cryogen-cooled conductor concepts for toroidal field (TF) magnet applications. The first one is somewhat like LTS conductors, the second, HTS stacks are capped by copper stabilizer, the last one, only stacks without copper. We simulate a simplified TF magnet model, 12 T, size of KSTAR, using the 3 conceptual HTS conductor designs. A comparative thermo-hydraulic analysis for a fast charging case has been carried out and its implications on HTS conductor design are further discussed. IEEE
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