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Accès ouvert déclaré 2019 article

Overview of the JET preparation for deuterium–tritium operation with the ITER like-wall

109Citations signalées, ce qui n’est pas une note de qualité
100Institutions déclarées
31Pays d’affiliation déclarés

Rattachement africain : fr, de, in, pt, ru, gb, fi, jp, it, gr, se, ro, es, us, hu, lv, pl, ua, cz, ch, sk, be, nl, si, ie, hr, br, at, kr, dk, lt. Niveau de preuve : code pays fourni par la source.

Le résumé fourni par la source

Abstract For the past several years, the JET scientific programme (Pamela et al 2007 Fusion Eng. Des. 82 590) has been engaged in a multi-campaign effort, including experiments in D, H and T, leading up to 2020 and the first experiments with 50%/50% D–T mixtures since 1997 and the first ever D–T plasmas with the ITER mix of plasma-facing component materials. For this purpose, a concerted physics and technology programme was launched with a view to prepare the D–T campaign (DTE2). This paper addresses the key elements developed by the JET programme directly contributing to the D–T preparation. This intense preparation includes the review of the physics basis for the D–T operational scenarios, including the fusion power predictions through first principle and integrated modelling, and the impact of isotopes in the operation and physics of D–T plasmas (thermal and particle transport, high confinement mode (H-mode) access, Be and W erosion, fuel recovery, etc). This effort also requires improving several aspects of plasma operation for DTE2, such as real time control schemes, heat load control, disruption avoidance and a mitigation system (including the installation of a new shattered pellet injector), novel ion cyclotron resonance heating schemes (such as the three-ions scheme), new diagnostics (neutron camera and spectrometer, active Alfvèn eigenmode antennas, neutral gauges, radiation hard imaging systems…) and the calibration of the JET neutron diagnostics at 14 MeV for accurate fusion power measurement. The active preparation of JET for the 2020 D–T campaign provides an incomparable source of information and a basis for the future D–T operation of ITER, and it is also foreseen that a large number of key physics issues will be addressed in support of burning plasmas.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
Overview of the JET preparation for deuterium–tritium operation with the ITER like-wall
Date Crossref
30/08/2019
Éditeur
IOP Publishing
Type
journal-article

Ce recoupement confirme des métadonnées liées au DOI. Il ne confirme ni la méthode ni les conclusions de l’étude, et il ne compte pas comme une seconde source scientifique indépendante.

Les institutions déclarées

Commissariat à l'Énergie Atomique et aux Énergies AlternativesCEA CadaracheForschungszentrum JülichInstitute for Plasma ResearchUniversity of LisbonPhysico-Technical InstituteCulham Science CentreQueen's University BelfastUniversity of HelsinkiVTT Technical Research Centre of FinlandNational Institutes for Quantum Science and TechnologyConsorzio CREO (Italy)National Centre of Scientific Research "Demokritos"Institute of Plasma PhysicsITERKurchatov InstituteTroitsk Institute for Innovation and Fusion ResearchUppsala UniversityNational Agency for New Technologies, Energy and Sustainable Economic DevelopmentNational Institute for Research and Development of Isotopic and Molecular TechnologiesMax Planck Institute for Plasma PhysicsUniversity of CataniaFusion for EnergyNational Institute for Fusion SciencePlasma Technology (United States)Aalto UniversityHUN-REN Wigner Research Centre for PhysicsUniversity of LatviaUniversity of OxfordOak Ridge National LaboratoryInstitut Jean LamourUniversité de LorraineMax Planck Institute for Plasma Physics - GreifswaldInstitute of Nuclear Physics, Polish Academy of SciencesInstitute for Nuclear ResearchCzech Academy of Sciences, Institute of Plasma PhysicsÉcole Polytechnique Fédérale de LausanneComenius University BratislavaUniversity of Wisconsin–MadisonLviv Polytechnic National UniversityUniversity of Milano-BicoccaCentre National de la Recherche ScientifiqueUniversité Côte d'AzurUniversity of YorkNational Institute of Research and Development for OptoelectronicsFusion (United States)Belgian Nuclear Research CentreNational Centre for Nuclear ResearchPrinceton Plasma Physics LaboratoryChalmers University of TechnologyUniversità degli Studi della TusciaUniversity of Rome Tor VergataAix-Marseille UniversitéUniversity of CagliariUniversity of WarwickInstitute of Plasma Physics and Laser MicrofusionDutch Institute for Fundamental Energy ResearchNational Institute for Laser Plasma and Radiation PhysicsGhent UniversityJožef Stefan InstituteJožef Stefan International Postgraduate SchoolKarlsruhe Institute of TechnologyDublin City UniversityUniversity of California San DiegoRoyal Military AcademyGeneral Atomics (United States)Horia Hulubei National Institute for R and D in Physics and Nuclear EngineeringEuropean CommissionUniversidad Politécnica de MadridRuđer Bošković InstituteUniversitat Politècnica de CatalunyaBarcelona Supercomputing CenterCentro Brasileiro de Pesquisas FísicasUniversidad de SevillaAustrian Academy of SciencesUniversität InnsbruckUniversity of ToyamaUniversity of StrathclydeNational Technical University of AthensUniversity College CorkTU WienUniversity of OpoleInstitute of PhysicsDaegu UniversityFoundation for Research and Technology HellasArizona State UniversityPolitecnico di TorinoInstitució Catalana de Recerca i Estudis AvançatsUniversidad Complutense de MadridUniversity of BaselUniversidad Carlos III de MadridPurdue University West LafayetteTechnical University of DenmarkFusion AcademyThe University of Texas at AustinUniversidade de São PauloUniversidade Cidade de São PauloUniversity of IoanninaLithuanian Energy InstituteUniversity of Bath

Une affiliation ne permet pas de déduire la nationalité d’un auteur.

Les sujets associés

Magnetic confinement fusion researchFusion materials and technologiesSuperconducting Materials and Applications

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