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Overview of Wendelstein 7-X high-performance operation

  • O. Grulke
  • , G. Acton
  • , J. Adamek
  • , D. Aggelis
  • , R. M. Alamo-Calderon
  • , C. Albert
  • , P. Aleynikov
  • , K. Aleynikova
  • , A. Alonso
  • , G. C. Amanekwe
  • , G. Anda
  • , T. Andreeva
  • , E. Andrew
  • , A. Arkuszewski
  • , S. Arnold
  • , M. Arranz
  • , M. Arvanitou
  • , E. Ascasibar
  • , M. Astrain Etxezarreta
  • , O. Asztalos
  • K. Avramidis, E. Aymerich, A. Baciero, J. P. Bähner, S. G. Baek, M. Balden, J. Baldzuhn, S. Ballinger, M. Banduch, S. Bannmann, A. Bañon Navarro, L. Baylor, A. Benndorf, C. D. Beidler, D. Beiersdorf, M. de Beij, M. van Berkel, N. Bertelli, C. Biedermann, B. Bieg, T. M. Biewer, G. Birkenmeier, L. Björk, B. Blackwell, H. Blank, T. Bluhm, D. Böckenhoff, D. Boeyaert, D. Bold, A. Bonciarelli, G. Bongiovi, M. Borchardt, D. Borodin, T. Bosman, Y. Boumendjel, H. Bouvain, S. Bozhenkov, T. Bräuer, C. Brandt, S. Brezinsek, K. J. Brunner, A. Buhler, S. Buller, L. Burton, C. Büschel, R. Bussiahn, B. Buttenschön, A. Buzás, V. Bykov, J. Cai, I. Calvo, A. Cappa, A. Carls, F. Carovani, M. Carr, D. Carralero, T. Carroll, B. B. de Carvalho, J. R. Casas, D. Castano-Bardawil, J. Cavalier, R. Cavazzana, N. Chaudhary, I. Chelis, D. Cipciar, G. Conway, F. Cordella, Y. Corre, P. Costello, K. Crombé, G. Cseh, B. Csillag, H. I. Cu Castillo, G. Czymek, H. Damm, R. J. Davies, S. Degenkolbe, W. Dekeyser, L. Delgado-Aparicio, A. Demby, C. Desgranges, C. P. Dhard, A. Dinklage, T. Dittmar, L. Dittrich, S. Dräger, M. Dreval, M. Drevlak, J. Droste, R. K. Duligal, P. Dumortier, D. Dunai, E. Edlund, A. Edmondson, P. van Eeten, G. Ehrke, M. Endler, D. A. Ennis, F. J. Escoto, T. Estrada, B. Faber, F. Federici, J. Fellinger, Y. Feng, D. L. Fernando, S. Fischer, O. P. Ford, T. Fornal, J. Frank, H. Frerichs, G. Fuchert, K. Fujii, M. Fukuyama, J. Galdón Quiroga, J. Gallego Llorente, Y. Gao, K. Garcia, O. E. Garcia, M. Garcia-Munoz, J. M. García Regaña, B. Geiger, J. Geiger, P. Geißler, M. Gerard, L. Giudicotti, T. Gonda, J. C. Gonzalez, A. González Ganzábal, A. Goodman, A. Goriaev, D. Gradic, M. Grahl, M. Grasser, D. Grekov, E. Grelier, G. Grenfel, M. Griener, M. Groth, M. Gruca, F. Gudicotti, J. F. Guerrero Arnaiz, V. Haak, M. de Haas, A. Haeussler, A. Hakola, L. van Ham, K. C. Hammond, B. Hamstra, X. Han, S. K. Hansen, A. Harris, J. H. Harris, D. Harting, D. Hartmann, D. Hathiramani, E. V. Hausten, S. Heinrich, P. Helander, G. Held, P. Henderson, F. Henke, S. A. Henneberg, L. Henschke, F. Herold, H. Hillebrecht, E. Hinson, M. Hirsch, A. Hoffmeister, A. Holtz, S. J. Hörmann, D. Höschen, M. Houry, J. Hromadka, J. Hua, X. Huang, K. Hunger, D. Hwangbo, K. Ida, Y. Igitkhanov, S. Iglesias Fernandez, V. Igochine, Z. Ioannidis, F. A. d’Isa, S. Jablonski, B. Jabłoński, M. Jakubowski, F. Jenko, A. Johansson, C. Johnson, T. C.W. van Kaathoven, J. Kaczmarczyk, S. Kajita, J. P. Kallmeyer, H. Kasahara, W. Kasparek, C. Kawan, Ye O. Kazakov, S. A. Keller, N. Kenmochi, W. Kernbichler, A. K. Kharwandikar, M. Khokhlov, C. Killer, A. Kirschner, R. Kleiber, C. C. Klepper, T. Klinger, J. Knauer, M. Knaup, A. Knieps, M. Kobayashi, G. Kocsis, M. Koelbl, Y. Kolesnichenko, A. Könies, J. Kontula, P. Kornejew, Y. Kovtun, M. Kozulia, A. Krämer-Flecken, M. Krause, T. Kremeyer, L. Krier, D. M. Kriete, T. Krings, M. Krychowiak, I. Ksiazek, M. Kubkowska, D. Kulla, Y. Kulyk, A. Kumar, F. Kunkel, T. Kurki-Suonio, I. Kuzmych, S. Kwak, L. Laguardia, A. Langenberg, H. Laqua, H. P. Laqua, K. Leche, B. Lee, W. Lee, H. Leyh, Y. Liang, L. Liao, M. Licchelli, Z. Lin, M. Lisaj, A. Litnovsky, F. Litovoli, J. Loizu, B. Lomanowski, R. Lopez Cansino, B. Lopez Miranda, D. Lopez-Rodriguez, J. Lore, A. Lorenz, J. Louwe, E. de la Luna, R. Lunsford, Y. Luo, V. Lutsenko, N. Maaziz, M. Machielsen, R. Mackenbach, M. Madeira, D. Makowski, P. Manz, E. Maragkoudakis, O. Marchuk, A. Marinoni, M. Markl, S. Marsen, J. Martinez Fernandez, Y. Martseniuk, N. Marushchenko, S. Masuzaki, S. Matsheza, D. Maurer, M. Mayer, D. Mazur, K. McCarthy, O. McCormack, P. McNeely, D. Medina Roque, J. Meineke, S. Meitner, A. Menzel-Barbara, B. van Milligen, S. Misdanitis, A. Mishchenko, R. Mitteau, E. Moeyaert, A. I. Mohammed, V. E. Moiseenko, A. Möller, S. Möller, B. Molnar, V. Moncada, D. Morfin-Guerrero, M. C.L. Morren, D. Moseev, G. Motojima, S. Mulas, P. Mulholland, V. Murugesan, M. Nagel, D. Nagy, V. Nair, Y. Narbutt, D. Naujoks, H. G. Neilson, F. Nespoli, G. Neu, R. Neu, O. Neubauer, U. Neuner, S. K. Ngo, D. Nicolai, S. K. Nielsen, N. Nikulsin, T. Nishizawa, L. Nitzsche, C. Nührenberg, R. Ochoukov, G. Offermanns, K. Ogawa, J. Ongena, J. W. Oosterbeek, M. Otte, E. Overduin, N. Pablant, L. Pacios, N. Panadero, A. Pandey, K. Parks, G. Partesotti, E. A. Pasch, S. de Pascuale, R. Pavlichenko, A. Pavone, E. Pawelec, A. de la Pena Gomez, A. Pereira, V. Perseo, B. Peterson, F. Pisano, S. Pitcher, B. Plaum, G. Plunk, L. Podavini, N. S. Polei, P. Poloskei, S. Ponomarenko, P. Pons-Villalonga, A. Popov, M. Porkolab, J. H.E. Proll, M. J. Pueschel, A. Raak, R. Ragona, K. Rahbarnia, M. Rasiński, J. Rasmussen, O. Raths, E. Rattawongnara, D. Refy, F. Reimold, T. Richert, M. Richou, J. Ricken, J. S. Riemann, K. Riße, J. de la Riva Villen, G. Roberg-Clark, E. Rodriguez, C. Rogge, V. Rohde, J. Romazanov, T. Romba, D. Rondeshagen, P. Rong, M. Rud, T. Rummel, A. Runov, N. Rust, L. Ryc, D. Ryndyk, H. Sakai, M. Salewski, E. Sanchez, L. Sanchis Sanchez, S. Satake, G. Satheeswaran, J. Schacht, E. Scharff, F. Scharmer, G. Schlisio, K. Schmid, B. S. Schmidt, G. L. Schmidt, O. Schmitz, M. Schneider, T. Schröder, R. Schroeder, M. Schülke, B. Schweer, S. Sereda, B. Shanahan, J. Shin, S. Shiraiwa, G. Sias, P. Sichta, F. B.T. Siddiki, S. Simko, L. Singh, S. Sipilae, C. Slaby, M. Ślęczka, B. Smith, D. R. Smith, H. M. Smith, J. Smoniewski, M. Spolaore, A. Spring, T. Stange, A. von Stechow, P. Steinbrunner, I. Stepanov, L. Stephey, U. Stroth, C. Suzuki, Y. Suzuki, C. Swee, L. Syrocki, T. Szepesi, M. Szymanski, H. Takahashi, N. Tamura, K. Tanaka, C. Tantos, S. Thiede, H. Thienpondt, H. Thomsen, T. Thun, S. Togo, T. Tork, M. Torkler, H. Trimiño Mora, A. Tsikouras, D. Valougeorgis, S. Varoutis, M. Vavrik, S. Vaz Mendes, M. Vecsei, J. L. Velasco, L. Versemann, M. Verstraeten, M. Vervier, N. Vianello, E. Viezzer, E. M. Villalobos-Granados, J. Wagner, E. Wang, M. Wappl, F. Warmer, Th Wegner, W. Wei, G. Weir, N. Wendler, A. White, M. Willensdorfer, T. Windisch, A. Winter, V. Winters, M. Wischmeier, R. de Wolf, R. C. Wolf, J. Wright, G. Wurden, P. Xanthopoulos, S. Xu, H. Yamada, X. Yan, J. Yang, Y. Yang, K. Ye, M. Yokoyama, M. Yoshinuma, B. Zamorski, M. Zanini, M. Zarnstorff, D. Zhang, C. Zhu, M. Zilker, J. Zimmermann, A. Zocco, H. Zohm, S. Zoletnik
  • Max-Planck-Institut für Plasmaphysik
  • Technical University of Denmark
  • Institute of Plasma Physics, Academy of Sciences of the Czech Republic
  • University of Thessaly
  • Pontificia Universidad Católica del Perú
  • Technische Universität Graz
  • Laboratorio Nacional de Fusión
  • Royal Military Academy
  • Atomic Energy Research Institute
  • Institute of Plasma Physics and Laser Microfusion
  • Technische Universität München
  • Budapest University of Technology and Economics
  • National and Kapodistrian University of Athens
  • University of Cagliari
  • MIT Plasma Science and Fusion Center
  • Commonwealth Fusion Systems
  • Oak Ridge National Laboratory
  • FOM Institute DIFFER
  • Princeton Plasma Physics Laboratory
  • Zakład Fizyki
  • The Australian National University
  • University of Wisconsin-Madison
  • KARLSRUHER INSTITUT FUER TECHNOLOGIE
  • Institute of Fusion Energy and Nuclear Waste Management—Plasmas Physics
  • Eindhoven University of Technology
  • University of Maryland, College Park
  • Technical University of Berlin
  • Culham Centre for Fusion Energy
  • Instituto Superior Técnico
  • Universitat Politècnica de Catalunya (UPC)
  • Consorzio Rfx
  • ENEA Centro Ricerche Frascati
  • Commissariat à l'Énergie Atomique (CEA)
  • University of Ghent
  • KU Leuven
  • Greifswald University
  • Inst. of Plasma Physics of the National Science Center, Kharkiv Institute of Physics and Technology
  • SUNY Cortland
  • Auburn University
  • Kyushu University
  • University of Seville
  • UiT the Arctic University of Norway
  • Padova University
  • Aalto University
  • ITER
  • VTT Technical Research Centre of Finland
  • Illinois State University
  • Charles University
  • National Institute for Fusion Science
  • University of Tsukuba
  • Lodz University of Technology
  • University of Tokyo
  • University of Stuttgart
  • Institute for Nuclear Research
  • University of Opole
  • V.N. Karazin Kharkiv National University
  • Columbia University
  • University of California, Irvine
  • University of Szczecin
  • National Research Nuclear University MEPhI
  • Ecole Polytechnique Federale de Lausanne
  • Uppsala University
  • Ioffe Physical-Technical Institute of the Russian Academy of Sciences
  • Institute for Plasma Science and Technology
  • Hiroshima University
  • Tohoku University
  • CNR
  • Los Alamos National Laboratory
  • University of Science and Technology of China

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

2 Citations (Scopus)

Résumé

The Wendelstein 7-X (W7-X) stellarator has completed two consecutive experimental campaigns OP 2.2 (Sep.-Dec. 2024) and OP 2.3 (Feb.-May 2025) under a new operational strategy enabling more than one year of uninterrupted device availability. This approach, supported by exceptionally high subsystem reliability, allowed sustained high-efficiency plasma operations with up to 80–100 discharges per day across a broad range of magnetic configurations. Several key technical upgrades-most notably the first operation of a 1.5 MW class steady-state gyrotron, a new steady-state pellet injector, and advanced real-time feedback control systems significantly enhanced heating, fueling, and plasma control capabilities. Together, these improvements enabled major advances in long-pulse performance, high-β operation, and confinement optimization. Long-pulse discharges achieved 1.8 GJ of injected energy under fully detached divertor conditions, while reduced-field scenarios facilitated record volume-averaged β values approaching 3%. High-performance plasmas with centrally peaked density profiles, created via neutral beam injection (NBI) or sustained pellet fueling, demonstrated strongly reduced turbulent transport and stellarator-record fusion triple products. Complementary studies of power exhaust and divertor heat loads revealed the role of scrape-off-layer drift physics in shaping strike-line patterns under attached conditions. Together, the results from OP 2.2 and OP 2.3 significantly expand the operational space of W7-X and strengthen its role as a leading platform for steady-state stellarator research and reactor-relevant plasma scenarios.

langue originaleAnglais
journalNuclear Fusion
Volume66
Numéro de publication11
Les DOIs
étatPublié - nov. 2026

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