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The DEMO magnet system – Status and future challenges

Corato, V.; Vorpahl, C.; Sedlak, K.; Anvar, V. A.; Bennet, J.; Biancolini, M. E.; Bonne, F.; Bonifetto, R.; Boso, D. P.; Brighenti, A.; Bruzzone, P.; Celentano, G.; Corte, A. della; De Marzi, G.; D’Auria, V.; Demattè, F.; Dembkowska, A.; Dicuonzo, O.; Zignani, C. F.; ... mehr

Abstract:

We present the pre-concept design of the European DEMO Magnet System, which has successfully passed the DEMO plant-level gate review in 2020. The main design input parameters originate from the so-called DEMO 2018 baseline, which was produced using the PROCESS systems code. It defines a major and minor radius of 9.1 m and 2.9 m, respectively, an on-axis magnetic field of 5.3 T resulting in a peak field on the toroidal field (TF) conductor of 12.0 T.

Four variants, all based on low-temperature superconductors (LTS), have been designed for the 16 TF coils. Two of these concepts were selected to be further pursued during the Concept Design Phase (CDP): the first having many similarities to the ITER TF coil concept and the second being the most innovative one, based on react-and-wind (RW) Nb3Sn technology and winding the coils in layers. Two variants for the five Central Solenoid (CS) modules have been investigated: an LTS-only concept resembling to the ITER CS and a hybrid configuration, in which the innermost layers are made of high-temperature superconductors (HTS), which allows either to increase the magnetic flux or to reduce the outer radius of the CS coil. ... mehr

Zugehörige Institution(en) am KIT Institut für Technische Physik (ITEP)
Publikationstyp Zeitschriftenaufsatz
Publikationsmonat/-jahr 01.2022
Sprache Englisch
Identifikator ISSN: 0920-3796, 1873-7196
KITopen-ID: 1000141901
HGF-Programm 31.13.01 (POF IV, LK 01) Ex-Vessel Plant Systems & Engineering
Erschienen in Fusion Engineering and Design
Verlag Elsevier
Band 174
Seiten Art.-Nr.: 112971
Vorab online veröffentlicht am 24.12.2021
Schlagwörter EU-DEMO superconducting magnets; React-and-Wind conductors; HTS hybrid Central Solenoid; magnet insulation
Nachgewiesen in Web of Science
Scopus
Dimensions
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Verlagsausgabe §
DOI: 10.5445/IR/1000141901
Veröffentlicht am 16.01.2022
Originalveröffentlichung
DOI: 10.1016/j.fusengdes.2021.112971
Scopus
Zitationen: 56
Web of Science
Zitationen: 55
Dimensions
Zitationen: 56
Seitenaufrufe: 117
seit 17.01.2022
Downloads: 77
seit 18.01.2022
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