Overview of the third JET deuterium-tritium campaign

被引:0
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作者
Kappatou, A. [1 ]
Baruzzo, M. [2 ]
Hakola, A. [3 ]
Joffrin, E. [4 ]
Keeling, D. [5 ]
Labit, B. [6 ]
Tsitrone, E. [4 ]
Vianello, N. [7 ]
Wischmeier, M. [1 ]
Balboa, I. [5 ]
Bernardo, J. [5 ]
Bernert, M. [1 ]
Bosman, T. [8 ,9 ]
Brezinsek, S. [10 ]
Brida, D. [1 ]
Carvalho, I.S. [11 ]
Carvalho, P. [5 ]
Ceelen, L. [8 ,9 ]
Challis, C.D. [5 ]
Coffey, I. [5 ]
Dittmar, T. [10 ]
Dunne, M. [1 ]
Faitsch, M. [1 ]
Field, A.R. [5 ]
Frassinetti, L. [12 ]
Garzotti, L. [5 ]
Ghani, Z. [5 ]
Giroud, C. [5 ]
Henderson, S. [5 ]
Henriques, R.B. [5 ]
Hobirk, J. [1 ]
Jacquet, P. [5 ]
Jepu, I. [5 ]
Kazakov, Ye O. [13 ]
King, D.B. [5 ]
Kirov, K.K. [5 ]
Kos, D. [5 ]
Krieger, K. [1 ]
Lennholm, M. [5 ]
Lerche, E. [13 ]
Litaudon, X. [4 ]
Litherland-Smith, E. [5 ]
Lomas, P. [5 ]
Lowry, C. [5 ]
Mailloux, J. [5 ]
Mantsinen, M.J. [14 ]
Maslov, M. [5 ]
Matveev, D. [10 ]
Meigs, A. [5 ]
Menmuir, S. [5 ]
机构
[1] Max-Planck-Institut für Plasmaphysik, Boltzmannstr. 2, Garching,85748, Germany
[2] Nuclear Department, ENEA, Frascati, Italy
[3] VTT Technical Research Centre of Finland Ltd, Espoo, Finland
[4] CEA, IRFM, Saint-Paul-lez-Durance, France
[5] United Kingdom Atomic Energy Authority, Culham Campus, Oxfordshire, Abingdon,OX14 3DB, United Kingdom
[6] École Polytechnique Fédérale de Lausanne (EPFL), Swiss Plasma Center (SPC), Lausanne,CH-1015, Switzerland
[7] Consorzio Consorzio RFX, ISTP, Padova, Italy
[8] DIFFER-Dutch Institute for Fundamental Energy Research, Eindhoven, Netherlands
[9] Dept. of Mechanical Engineering, Control Systems Technology Group, Eindhoven University of Technology, Eindhoven, Netherlands
[10] Forschungszentrum Jülich GmbH, Institute of Fusion Energy and Nuclear Waste Management—Plasma Physics, Jülich,52425, Germany
[11] ITER Organization, Route de Vinon-sur-Verdon, CS 90 046, St Paul Lez Durance,13067 Cedex, France
[12] KTH Royal Institute of Technology, Stockholm, Sweden
[13] Laboratory for Plasma Physics, LPP-ERM/KMS, Brussels,B-1000, Belgium
[14] ICREA and Barcelona Supercomputing Center, Barcelona, Spain
[15] Institute of Plasma Physics and Laser Microfusion, Hery 23, Warsaw,01-497, Poland
[16] Laboratorio Nacional de Fusión, CIEMAT, Madrid, Spain
[17] Dipartimento di Ingegneria Astronautica, Elettrica ed Energetica, Sapienza Universitá di Roma, via Eudossiana 18, Roma,00184, Italy
关键词
Colliding beam accelerators - Electron correlations - Fusion reactor divertors - Magnetoplasma - Plasma simulation - Semiconductor plasmas - Tokamak devices;
D O I
10.1088/1361-6587/adbd75
中图分类号
学科分类号
摘要
JET returned to deuterium-tritium operations in 2023 (DTE3 campaign), approximately two years after DTE2. DTE3 was designed as an extension of JET’s 2022-2023 deuterium campaigns, which focused on developing scenarios for ITER and DEMO, integrating in-depth physics understanding and control schemes. These scenarios were evaluated with mixed D-T fuel, using the only remaining tritium-capable tokamak until its closure in 2023. A core-edge-SOL integrated H-mode scenario was developed and tested in D-T, showing good confinement and partial divertor detachment with Ne-seeding. Stationary pulses with good performance, no tungsten accumulation, and even without ELMs were achieved in D-T. Plasmas with pedestals limited by peeling modes were studied with D, T-rich, and D-T fuel, revealing a positive correlation between pedestal electron pressure and pedestal electron density. The Quasi-Continuous Exhaust regime was successfully achieved with D-T fuel, with access criteria similar to those in D plasmas. A scenario with full detachment, the X-point radiator regime, was established in D-T, aided by the real-time control of the radiator’s position. The crucial characterisation of tritium retention continued in DTE3, using gas balance measurements and the new LID-QMS diagnostic. Nuclear technology studies were advanced during the DTE3 campaign, addressing issues such as the activation of water in cooling loops and single event effects on electronics. Building on the previous D, T and DTE2 campaigns and the lessons learned from them, DTE3 extended our understanding of D-T plasmas, particularly in scenarios relevant to next-generation devices such as ITER and DEMO. © 2025 The Author(s). Published by IOP Publishing Ltd.
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