Author: Aguilar, J.
Paper Title Page
TUPOJO01 Commissioning Plan of the IFMIF-DONES Accelerator 330
 
  • I. Podadera, A. Ibarra, M. Weber
    Consorcio IFMIF-DONES España, Granada, Spain
  • J. Aguilar, S. Becerril-Jarque, M. Luque, J. Maestre, D. Sánchez-Herranz, C. Torregrosa
    UGR, Granada, Spain
  • F. Arranz, M. García, A. Ibarra, D. Jimenez-Rey, J. Mollá, C. Oliver, I. Podadera, D. Regidor, M. Weber, C. de la Morena
    CIEMAT, Madrid, Spain
  • L. Bellan, A. Palmieri, A. Pisent
    INFN/LNL, Legnaro (PD), Italy
  • D. Bernardi, G. Micciché, F.S. Nitti
    ENEA Brasimone, Centro Ricerche Brasimone, Camugnano, BO, Italy
  • B. Bolzon, N. Chauvin, S. Chel, A. Madur
    CEA-IRFU, Gif-sur-Yvette, France
  • P. Cara, G. Duglue
    Fusion for Energy, Garching, Germany
  • J. Castellanos
    Universidad de Castilla-La Mancha, Ciudad Real, Spain
  • T. Dézsi
    CER, Budapest, Hungary
  • M.J. Ferreira
    Lund University, Faculty of Engineering (LTH), Lund, Sweden
  • V. Hauer, Y.F. Qiu
    KIT, Eggenstein-Leopoldshafen, Germany
  • W. Królas, U. Wiacek
    IFJ-PAN, Kraków, Poland
  • T. Lehmann
    Karlsruher Institut für Technologie, Institut für Fördertechnik und Logistiksysteme, Karlsruhe, Germany
  • L. Macià, M. Sanmartí, B.K. Singh
    IREC, Sant Adria del Besos, Spain
  • C.A. Martins
    Lund University, Lund, Sweden
  • C. Prieto
    Empresarios Agrupados, Madrid, Spain
 
  Funding: Funded by the European Union via the Euratom Research and Training Programme (Grant Agreement No 101052200 - EUROfusion)
IFMIF-DONES (In­ter­na­tional Fu­sion Ma­te­ri­als Ir­ra­di­a­tion Fa­cil­ity- DEMO-Ori­ented Neu­tron Early Source) - a pow­er­ful neu­tron ir­ra­di­a­tion fa­cil­ity for stud­ies and cer­ti­fi­ca­tion of ma­te­ri­als to be used in fu­sion re­ac­tors - is planned as part of the Eu­ro­pean roadmap to fu­sion elec­tric­ity. Its main goal will be to char­ac­ter­ize and to qual­ify ma­te­ri­als under ir­ra­di­a­tion in a neu­tron field sim­i­lar to the one faced in a fu­sion re­ac­tor. The in­tense neu­tron source is pro­duced by im­ping­ing deuterons, from high-power lin­ear deuteron ac­cel­er­a­tor, on a liq­uid lithium cur­tain. The fa­cil­ity has ac­com­plished the pre­lim­i­nary de­sign phase and is cur­rently in its de­tailed de­sign phase. At the pre­sent stage, it is im­por­tant to have a clear un­der­stand­ing of how the com­mis­sion­ing of the fa­cil­ity will be per­formed, es­pe­cially the com­mis­sion­ing of a 5 MW CW deuteron beam, to­gether with the lithium cur­tain and the beam op­ti­miza­tion for the neu­tron ir­ra­di­a­tion. In this con­tri­bu­tion, the pre­sent plans for the hard­ware and beam com­mis­sion­ing of the ac­cel­er­a­tor will be given, fo­cus­ing on the most crit­i­cal as­pects of the tiered ap­proach and on the in­te­gra­tion of the pro­ce­dure with the lithium and tests sys­tems.
 
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DOI • reference for this paper ※ https://doi.org/10.18429/JACoW-LINAC2022-TUPOJO01  
About • Received ※ 24 August 2022 — Revised ※ 29 August 2022 — Accepted ※ 31 August 2022 — Issue date ※ 02 September 2022
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