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Final Design of the Quench Protection Circuits for the JT-60SA Superconducting Magnets (Articolo in rivista)
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- Final Design of the Quench Protection Circuits for the JT-60SA Superconducting Magnets (Articolo in rivista) (literal)
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- 2012-01-01T00:00:00+01:00 (literal)
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- 10.1109/TPS.2011.2171008 (literal)
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Elena Gaio; Alberto Maistrello; Alberto Coffetti; Teresa Gargano; Mauro Perna; Luca Novello; Alberto Coletti; Makoto Matsukawa; Kunihito Yamauchi (2012)
Final Design of the Quench Protection Circuits for the JT-60SA Superconducting Magnets
in IEEE transactions on plasma science; IEEE-Institute Of Electrical And Electronics Engineers Inc., Piscataway (Stati Uniti d'America)
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- Elena Gaio; Alberto Maistrello; Alberto Coffetti; Teresa Gargano; Mauro Perna; Luca Novello; Alberto Coletti; Makoto Matsukawa; Kunihito Yamauchi (literal)
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- Article number: 6075265
La rivista è pubblicata anche online con ISSN 1939-9375. (literal)
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- 1 Consorzio RFX, EURATOM-ENEA Association, 35127 Padova, Italy;
2 Ansaldo Sistemi Industriali, 20126 Milano, Italy;
3 F4E Broader Development of Fusion Department, 85748 Garching, Germany;
4 Naka Fusion Institute, Japan.
Atomic Energy Agency, Naka 311-0193, Japan (e-mail: matsukawa.makoto@jaea.go.jp; yamauchi.kunihito@jaea.go.jp).
(Elena Gaio 1; Alberto Maistrello 1; Alberto Coffetti 2; Teresa Gargano 2; Mauro Perna 2; Luca Novello 3; Alberto Coletti 3; Makoto Matsukawa 4; Kunihito Yamauchi 4) (literal)
- Titolo
- Final Design of the Quench Protection Circuits for the JT-60SA Superconducting Magnets (literal)
- Abstract
- This paper describes the detailed design of the quench protection circuits (QPCs) for the superconducting toroidal field (TF) and poloidal field (PF) magnets of the satellite tokamak JT-60SA, which will be installed in Naka, Japan. The nominal currents to be interrupted and the maximum reapplied voltages are 25.7 kA and 2.8 kV for the TF QPCs and 20 kA and 5 kV for the PF QPCs. The innovative solution proposed in the QPC design is based on a hybrid circuit breaker (CB) composed of a mechanical bypass switch for conducting the continuous current, in parallel to a static CB for current interruption. The main choices of the final design are presented and discussed, either to confirm or to update and complete the study performed at the conceptual design level. (literal)
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