This paper deals with the qualification process of the full scale prototypes of the Hybrid mechanical-static dc Circuit Breaker (HCB) for the Quench Protection Circuits (QPC) of the Toroidal Field (TF) and Poloidal Field (PF) superconducting coils of the Satellite Tokamak JT-60SA. The HCB developed for JT-60SA QPC is the first dc circuit breaker based on hybrid mechanical-static design at this level of power (25.7 kA-1.93 kV, +/- 20 kA-+/- 3.8 kV). Moreover, the JT-60SA QPC represents the first application of protection for superconducting magnets based on this hybrid technology. Special type tests have been designed to verify the performance of the device up to the nominal ratings and beyond, thus proving the suitability or the technology, the design margins, and the reliability; the results of the most significant tests are presented and discussed. The qualification program also includes the validation of the electrical models developed during the design phase, which are described in the paper, too.

Experimental Qualification of the Hybrid Circuit Breaker Developed for JT-60SA Quench Protection Circuit

Gaio Elena;
2014

Abstract

This paper deals with the qualification process of the full scale prototypes of the Hybrid mechanical-static dc Circuit Breaker (HCB) for the Quench Protection Circuits (QPC) of the Toroidal Field (TF) and Poloidal Field (PF) superconducting coils of the Satellite Tokamak JT-60SA. The HCB developed for JT-60SA QPC is the first dc circuit breaker based on hybrid mechanical-static design at this level of power (25.7 kA-1.93 kV, +/- 20 kA-+/- 3.8 kV). Moreover, the JT-60SA QPC represents the first application of protection for superconducting magnets based on this hybrid technology. Special type tests have been designed to verify the performance of the device up to the nominal ratings and beyond, thus proving the suitability or the technology, the design margins, and the reliability; the results of the most significant tests are presented and discussed. The qualification program also includes the validation of the electrical models developed during the design phase, which are described in the paper, too.
2014
Istituto gas ionizzati - IGI - Sede Padova
Inglese
24
3
5
http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=6674098
Sì, ma tipo non specificato
DC circuit breaker
hybrid circuit breaker
IGCT
quench protection circuit
Article Number: 3801505; IEEE transactions on applied superconductivity (Online) Attiva dal: 1991 Editore: Institute of Electrical and Electronics Engineers, - New York, NY Paese di pubblicazione: Stati Uniti d'America Lingua: inglese e-Issn: 1558-2515 Titolo chiave: IEEE transactions on applied superconductivity (Online) Titolo proprio: IEEE transactions on applied superconductivity (Online) Titolo abbreviato: IEEE trans. appl. supercond. (Online)
1
info:eu-repo/semantics/article
262
Maistrello Alberto; Gaio Elena; Ferro Alberto; Perna Mauro; Panizza Carlo; Soso Francesco; Novello Luca; Matsukawa Makoto; Yamauchi Kunihito
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/263839
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