Overview of physics studies on ASDEX Upgrade
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Journal ISSN
Volume Title
A2 Katsausartikkeli tieteellisessä aikakauslehdessä
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Date
2019-07-22
Department
Culham Science Centre
Max-Planck-Institut für Plasmaphysik
Department of Applied Physics
Dutch Institute for Fundamental Energy Research
University of Lisbon
Eindhoven University of Technology
National Research Council of Italy
Princeton University
CEA
Forschungszentrum Jülich
Université de Lorraine
CNRS
Agenzia nazionale per le nuove tecnologie, l'energia e lo sviluppo economico sostenibile
University of Warwick
Swiss Federal Institute of Technology Lausanne
University of Innsbruck
University of Wisconsin-Madison
Massachusetts Institute of Technology
Hungarian Academy of Sciences
Soltan Institute for Nuclear Studies
University of York
Karlsruhe Institute of Technology
KTH Royal Institute of Technology
University of Seville
University of Milan - Bicocca
Fusion and Plasma Physics
VTT Technical Research Centre of Finland
Vienna University of Technology
Max-Planck Computing and Data Facility
General Atomics
Université Paris-Saclay
Graz University of Technology
Institut für Grenzflachenverfahrenstechnik und Plasmatechnologie
Danmarks Tekniske Universitet
Budapest University of Technology and Economics
Polish Academy of Sciences
Royal Military Academy
Ghent University
ITER Organization
University of California Davis
Polytechnic University of Turin
Barcelona Supercomputing Center
University College Cork
Chalmers University of Technology
University of Cagliari
ITER
CIEMAT
CAS - Institute of Plasma Physics
Max Planck Institute for Plasma Physics
Max-Planck-Institut für Plasmaphysik
Department of Applied Physics
Dutch Institute for Fundamental Energy Research
University of Lisbon
Eindhoven University of Technology
National Research Council of Italy
Princeton University
CEA
Forschungszentrum Jülich
Université de Lorraine
CNRS
Agenzia nazionale per le nuove tecnologie, l'energia e lo sviluppo economico sostenibile
University of Warwick
Swiss Federal Institute of Technology Lausanne
University of Innsbruck
University of Wisconsin-Madison
Massachusetts Institute of Technology
Hungarian Academy of Sciences
Soltan Institute for Nuclear Studies
University of York
Karlsruhe Institute of Technology
KTH Royal Institute of Technology
University of Seville
University of Milan - Bicocca
Fusion and Plasma Physics
VTT Technical Research Centre of Finland
Vienna University of Technology
Max-Planck Computing and Data Facility
General Atomics
Université Paris-Saclay
Graz University of Technology
Institut für Grenzflachenverfahrenstechnik und Plasmatechnologie
Danmarks Tekniske Universitet
Budapest University of Technology and Economics
Polish Academy of Sciences
Royal Military Academy
Ghent University
ITER Organization
University of California Davis
Polytechnic University of Turin
Barcelona Supercomputing Center
University College Cork
Chalmers University of Technology
University of Cagliari
ITER
CIEMAT
CAS - Institute of Plasma Physics
Max Planck Institute for Plasma Physics
Major/Subject
Mcode
Degree programme
Language
en
Pages
21
Series
Nuclear Fusion, Volume 59, issue 11
Abstract
The ASDEX Upgrade (AUG) programme, jointly run with the EUROfusion MST1 task force, continues to significantly enhance the physics base of ITER and DEMO. Here, the full tungsten wall is a key asset for extrapolating to future devices. The high overall heating power, flexible heating mix and comprehensive diagnostic set allows studies ranging from mimicking the scrape-off-layer and divertor conditions of ITER and DEMO at high density to fully non-inductive operation (q 95 = 5.5, ) at low density. Higher installed electron cyclotron resonance heating power 6 MW, new diagnostics and improved analysis techniques have further enhanced the capabilities of AUG. Stable high-density H-modes with MW m-1 with fully detached strike-points have been demonstrated. The ballooning instability close to the separatrix has been identified as a potential cause leading to the H-mode density limit and is also found to play an important role for the access to small edge-localized modes (ELMs). Density limit disruptions have been successfully avoided using a path-oriented approach to disruption handling and progress has been made in understanding the dissipation and avoidance of runaway electron beams. ELM suppression with resonant magnetic perturbations is now routinely achieved reaching transiently . This gives new insight into the field penetration physics, in particular with respect to plasma flows. Modelling agrees well with plasma response measurements and a helically localised ballooning structure observed prior to the ELM is evidence for the changed edge stability due to the magnetic perturbations. The impact of 3D perturbations on heat load patterns and fast-ion losses have been further elaborated. Progress has also been made in understanding the ELM cycle itself. Here, new fast measurements of and E r allow for inter ELM transport analysis confirming that E r is dominated by the diamagnetic term even for fast timescales. New analysis techniques allow detailed comparison of the ELM crash and are in good agreement with nonlinearMHD modelling. The observation of accelerated ions during the ELM crash can be seen as evidence for the reconnection during the ELM. As type-I ELMs (even mitigated) are likely not a viable operational regime in DEMO studies of 'natural' no ELM regimes have been extended. Stable I-modes up to have been characterised using -feedback. Core physics has been advanced by more detailed characterisation of the turbulence with new measurements such as the eddy tilt angle - measured for the first time - or the cross-phase angle of and fluctuations. These new data put strong constraints on gyro-kinetic turbulence modelling. In addition, carefully executed studies in different main species (H, D and He) and with different heating mixes highlight the importance of the collisional energy exchange for interpreting energy confinement. A new regime with a hollow profile now gives access to regimes mimicking aspects of burning plasma conditions and lead to nonlinear interactions of energetic particle modes despite the sub-Alfvénic beam energy. This will help to validate the fast-ion codes for predicting ITER and DEMO.Description
| openaire: EC/H2020/633053/EU//EUROfusion
Keywords
DEMO, ITER, magnetic confinement, nuclear fusion, tokamak physics
Citation
Meyer , H , Angioni , C , Albert , C G , Arden , N , Arredondo Parra , R , Asunta , O , De Baar , M , Balden , M , Bandaru , V , Behler , K , Bergmann , A , Bernardo , J , Bernert , M , Biancalani , A , Bilato , R , Birkenmeier , G , Blanken , T C , Bobkov , V , Bock , A , Bolzonella , T , Bortolon , A , Böswirth , B , Bottereau , C , Bottino , A , Van Den Brand , H , Brezinsek , S , Brida , D , Brochard , F , Bruhn , C , Buchanan , J , Buhler , A , Burckhart , A , Camenen , Y , Carlton , D , Carr , M , Carralero , D , Castaldo , C , Cavedon , M , Cazzaniga , C , Ceccuzzi , S , Challis , C , Chankin , A , Chapman , S , Cianfarani , C , Clairet , F , Coda , S , Coelho , R , Coenen , J W , Colas , L , Conway , G D , Costea , S , Coster , D P , Cote , T B , Creely , A , Croci , G , Cseh , G , Czarnecka , A , Cziegler , I , D'Arcangelo , O , David , P , Day , C , Delogu , R , De Marné , P , Denk , S S , Denner , P , Dibon , M , Di Siena , A , Douai , D , Drenik , A , Drube , R , Dunne , M , Duval , B P , Dux , R , Eich , T , Elgeti , S , Engelhardt , K , Erdös , B , Erofeev , I , Esposito , B , Fable , E , Faitsch , M , Fantz , U , Faugel , H , Faust , I , Felici , F , Ferreira , J , Fietz , S , Figuereido , A , Fischer , R , Ford , O , Frassinetti , L , Freethy , S , Fröschle , M , Fuchert , G , Fuchs , J C , Fünfgelder , H , Galazka , K , Galdon-Quiroga , J , Gallo , A , Gao , Y , Garavaglia , S , Garcia-Carrasco , A , Garcia-Munoz , M , Geiger , B , Giannone , L , Gil , L , Giovannozzi , E , Gleason-González , C , Glöggler , S , Gobbin , M , Görler , T , Gomez Ortiz , I , Gonzalez Martin , J , Goodman , T , Gorini , G , Gradic , D , Grater , A , Granucci , G , Greuner , H , Griener , M , Groth , M , Gude , A , Günter , S , Guimarais , L , Haas , G , Hakola , A H , Ham , C , Happel , T , Den Harder , N , Harrer , G F , Harrison , J , Hauer , V , Hayward-Schneider , T , Hegna , C C , Heinemann , B , Heinzel , S , Hellsten , T , Henderson , S , Hennequin , P , Herrmann , A , Heyn , M F , Heyn , E , Hitzler , F , Hobirk , J , Höfler , K , Hölzl , M , Höschen , T , Holm , J H , Hopf , C , Hornsby , W A , Horvath , L , Houben , A , Huber , A , Igochine , V , Ilkei , T , Ivanova-Stanik , I , Jacob , W , Jacobsen , A S , Janky , F , Jansen Van Vuuren , A , Jardin , A , Jaulmes , F , Jenko , F , Jensen , T , Joffrin , E , Kasemann , C P , Kallenbach , A , Kálvin , S , Kantor , M , Kappatou , A , Kardaun , O , Karhunen , J , Kasilov , S , Kazakov , Y , Kernbichler , W , Kirk , A , Kjer Hansen , S , Klevarova , V , Kocsis , G , Köhn , A , Koubiti , M , Krieger , K , Krivska , A , Kramer-Flecken , A , Kudlacek , O , Kurki-Suonio , T , Kurzan , B , Labit , B , Lackner , K , Laggner , F , Lang , P T , Lauber , P , Lebschy , A , Leuthold , N , Li , M , Linder , O , Lipschultz , B , Liu , F , Liu , Y Q , Lohs , A , Lu , Z , Luda Di Cortemiglia , T , Luhmann , N C , Lunsford , R , Lunt , T , Lyssoivan , A , Maceina , T , Madsen , J , Maggiora , R , Maier , H , Maj , O , Mailloux , J , Maingi , R , Maljaars , E , Manas , P , Mancini , A , Manhard , A , Manso , M E , Mantica , P , Mantsinen , M , Manz , P , Maraschek , M , Martens , C , Martin , P , Marrelli , L , Martitsch , A , Mayer , M , Mazon , D , McCarthy , P J , McDermott , R , Meister , H , Medvedeva , A , Merkel , R , Merle , A , Mertens , V , Meshcheriakov , D , Meyer , O , Miettunen , J , Milanesio , D , Mink , F , Mlynek , A , Monaco , F , Moon , C , Nabais , F , Nemes-Czopf , A , Neu , G , Neu , R , Nielsen , A H , Nielsen , S K , Nikolaeva , V , Nocente , M , Noterdaeme , J M , Novikau , I , Nowak , S , Oberkofler , M , Oberparleiter , M , Ochoukov , R , Odstrcil , T , Olsen , J , Orain , F , Palermo , F , Pan , O , Papp , G , Paradela Perez , I , Pau , A , Pautasso , G , Penzel , F , Petersson , P , Pinzón Acosta , J , Piovesan , P , Piron , C , Pitts , R , Plank , U , Plaum , B , Ploeckl , B , Plyusnin , V , Pokol , G , Poli , E , Porte , L , Potzel , S , Prisiazhniuk , D , Pütterich , T , Ramisch , M , Rasmussen , J , Rattá , G A , Ratynskaia , S , Raupp , G , Ravera , G L, Réfy , D , Reich , M , Reimold , F , Reiser , D , Ribeiro , T , Riesch , J , Riedl , R , Rittich , D , Rivero-Rodriguez , J F , Rocchi , G , Rodriguez-Ramos , M , Rohde , V , Ross , A , Rott , M , Rubel , M , Ryan , D , Ryter , F , Saarelma , S , Salewski , M , Salmi , A , Sanchis-Sanchez , L , Santos , J , Sauter , O , Scarabosio , A , Schall , G , Schmid , K , Schmitz , O , Schneider , P A , Schrittwieser , R , Schubert , M , Schwarz-Selinger , T , Schweinzer , J , Scott , B , Sehmer , T , Seliunin , E , Sertoli , M , Shabbir , A , Shalpegin , A , Shao , L , Sharapov , S , Sias , G , Siccinio , M , Sieglin , B , Sigalov , A , Silva , A , Silva , C , Silvagni , D , Simon , P , Simpson , J , Smigelskis , E , Snicker , A , Sommariva , C , Sozzi , C , Spolaore , M , Stegmeir , A , Stejner , M , Stober , J , Stroth , U , Strumberger , E , Suarez , G , Sun , H J , Suttrop , W , Sytova , E , Szepesi , T , Tál , B , Tala , T , Tardini , G , Tardocchi , M , Teschke , M , Terranova , D , Tierens , W , Thorén , E ,Told , D , Tolias , P , Tudisco , O , Treutterer , W , Trier , E , Tripský , M , Valisa , M , Valovic , M , Vanovac , B , Van Vugt , D , Varoutis , S , Verdoolaege , G , Vianello , N , Vicente , J , Vierle , T , Viezzer , E , Von Toussaint , U , Wagner , D , Wang , N , Wang , X , Weiland , M , White , A E , Wiesen , S , Willensdorfer , M , Wiringer , B , Wischmeier , M , Wolf , R , Wolfrum , E , Xiang , L , Yang , Q , Yang , Z , Yu , Q , Zagórski , R , Zammuto , I , Zhang , W , Van Zeeland , M , Zehetbauer , T , Zilker , M , Zoletnik , S & Zohm , H 2019 , ' Overview of physics studies on ASDEX Upgrade ' , Nuclear Fusion , vol. 59 , no. 11 , 112014 . https://doi.org/10.1088/1741-4326/ab18b8