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Accès ouvert déclaré 2024 article

A control oriented strategy of disruption prediction to avoid the configuration collapse of tokamak reactors

29Citations signalées, ce qui n’est pas une note de qualité
116Institutions déclarées
30Pays d’affiliation déclarés

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

Le résumé fourni par la source

The objective of thermonuclear fusion consists of producing electricity from the coalescence of light nuclei in high temperature plasmas. The most promising route to fusion envisages the confinement of such plasmas with magnetic fields, whose most studied configuration is the tokamak. Disruptions are catastrophic collapses affecting all tokamak devices and one of the main potential showstoppers on the route to a commercial reactor. In this work we report how, deploying innovative analysis methods on thousands of JET experiments covering the isotopic compositions from hydrogen to full tritium and including the major D-T campaign, the nature of the various forms of collapse is investigated in all phases of the discharges. An original approach to proximity detection has been developed, which allows determining both the probability of and the time interval remaining before an incoming disruption, with adaptive, from scratch, real time compatible techniques. The results indicate that physics based prediction and control tools can be developed, to deploy realistic strategies of disruption avoidance and prevention, meeting the requirements of the next generation of devices.

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Le contrôle bibliographique ouvert

DOI retrouvé dans Crossref DOI retrouvé ; titre concordant.

Titre Crossref
A control oriented strategy of disruption prediction to avoid the configuration collapse of tokamak reactors
Date Crossref
18/03/2024
Éditeur
Springer Science and Business Media LLC
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

National Agency for New Technologies, Energy and Sustainable Economic DevelopmentUniversity of PaduaInstitute for the Science and Technology of PlasmasUniversity of Rome Tor VergataNational Institute for Laser Plasma and Radiation PhysicsUniversidad Complutense de MadridCulham Science CentreUnited Kingdom Atomic Energy AuthorityUniversity of LisbonNational Centre for Nuclear ResearchPhysico-Technical InstituteUniversity of HelsinkiVTT Technical Research Centre of FinlandNational Institutes for Quantum Science and TechnologyConsorzio CREO (Italy)National Centre of Scientific Research "Demokritos"Kurchatov InstituteITERUniversidad Nacional de Educación a DistanciaTroitsk Institute for Innovation and Fusion ResearchUppsala UniversityMax Planck Institute for Plasma PhysicsNational Institute for Fusion ScienceFusion (United States)Plasma Technology (United States)Fusion AcademyUniversidad Politécnica de MadridHUN-REN Centre for Energy ResearchUniversity of LatviaUniversity of CagliariNational Technical University of AthensCommissariat à l'Énergie Atomique et aux Énergies AlternativesCEA CadaracheUniversity of CataniaOak Ridge National LaboratoryKarlsruhe Institute of TechnologyGeneral Atomics (United States)University of BaselKTH Royal Institute of TechnologyCentre National de la Recherche ScientifiqueInstitut Jean LamourUniversité de LorraineMax Planck Institute for Plasma Physics - GreifswaldMaritime University of SzczecinInstitute of Nuclear Physics, Polish Academy of SciencesCzech Academy of Sciences, Institute of Plasma PhysicsÉcole Polytechnique Fédérale de LausanneUniversity of Wisconsin–MadisonLviv Polytechnic National UniversityPrinceton Plasma Physics LaboratoryForschungszentrum JülichUniversité Côte d'AzurInstitut de Biologie ValroseRuđer Bošković InstituteNational Institute of Research and Development for OptoelectronicsUniversità degli Studi della TusciaAix-Marseille UniversitéUniversidade de São PauloUniversidade Cidade de São PauloUniversity of Milano-BicoccaUniversity of WarwickInstitute of Plasma Physics and Laser MicrofusionAalto UniversityDutch Institute for Fundamental Energy ResearchWarsaw University of TechnologyQueen's University BelfastGhent UniversityJožef Stefan InstituteJožef Stefan International Postgraduate SchoolNational Institute for Research and Development of Isotopic and Molecular TechnologiesDublin City UniversityUniversity of California San DiegoKharkiv Institute of Physics and TechnologyUniversity of YorkChalmers University of TechnologyEuropean CommissionUniversity of Tennessee at KnoxvilleUniversitat Politècnica de CatalunyaBarcelona Supercomputing CenterUniversidad de SevillaInstitut Universitaire des Systèmes Thermiques IndustrielsSapienza University of RomeInstitute for Nuclear ResearchBelgian Nuclear Research CentreUniversity of ToyamaUniversity of California, IrvineTechnical University of DenmarkComenius University BratislavaUniversity College CorkUniversity of OpoleInstitute of PhysicsDaegu UniversitySeoul National UniversityFusion for EnergyArizona State UniversityPolitecnico di TorinoInstitució Catalana de Recerca i Estudis AvançatsInstitute for Complex SystemsEindhoven University of TechnologyPurdue University West LafayetteShimane UniversityCzech Technical University in PragueWilliam & MaryWilliams (United States)University of StrathclydeKindai UniversityShizuoka UniversityUniversity of OxfordColumbia UniversityUniversity of IoanninaUniversidade do PortoThe University of TokyoLithuanian Energy InstituteIbaraki UniversityAustrian Academy of SciencesTU Wien

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

Les sujets associés

Fault Detection and Control SystemsNuclear reactor physics and engineeringAnomaly Detection Techniques and Applications

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