Characterisation of the scrape-off layer in JET-ILW deuterium and helium low-confinement mode plasmas

被引:0
|
作者
Rees, D. [1 ]
Groth, M. [1 ]
Aleiferis, S. [2 ]
Brezinsek, S. [3 ]
Brix, M. [2 ]
Jepu, I. [2 ]
Lawson, K. D. [2 ]
Meigs, A. G. [2 ]
Menmuir, S. [2 ]
Kirov, K. [2 ]
Lomas, P. [2 ]
Lowry, C. [2 ]
Thomas, B. [2 ]
Widdowson, A. [2 ]
Carvalho, P. [2 ]
Delabie, E. [4 ]
机构
[1] Aalto Univ, Dept Appl Phys, Espoo, Finland
[2] UKAEA, Culham Sci Ctr, Abingdon, England
[3] Forschungszentrum Julich GmbH, Inst Energy & Climate Res Plasma Phys, Julich, Germany
[4] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA
关键词
Helium plasma; Detachment; JET; Tokamak; Divertor; SOL; DIVERTOR; DETACHMENT; PARTICLE;
D O I
10.1016/j.nme.2024.101657
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
Langmuir probe measurements in neutral beam injection (NBI) heated, low-confinement mode plasmas in JET ITER-like wall showed that the current to the divertor targets, I div , in helium (He) plasmas was up to 70 % lower on the low-field side (LFS) than in otherwise identical deuterium (D) plasmas. The edge plasma density at which the rollover of Idivoccurred div occurred i.e. the onset of detachment, was 10 % higher in He plasmas on both the LFS and high-field side (HFS). The density of I div rollover increases by 25 % for He when the NBI power increases 1 MW to 5 MW. The total radiated power was similar in He and D plasmas for densities below the I div rollover. At densities above the I div rollover density, the total radiated power and power from within the separatrix are higher in He, reducing the power across the separatrix and subsequently I div,LFS . In He plasmas, the peak radiated power was observed within the confined region above the X-point in tomographic reconstructions from bolometry.
引用
收藏
页数:9
相关论文
共 41 条
  • [1] Characterisation of divertor detachment onset in JET-ILW hydrogen, deuterium, tritium and deuterium-tritium low-confinement mode plasmas
    Groth, M.
    Solokha, V.
    Aleiferis, S.
    Brezinsek, S.
    Brix, M.
    Carvalho, I. S.
    Carvalho, P.
    Corrigan, G.
    Harting, D.
    Horsten, N.
    Jepu, I.
    Karhunen, J.
    Kirov, K.
    Lomanowski, B.
    Lawson, K. D.
    Lowry, C.
    Meigs, A. G.
    Menmuir, S.
    Pawelec, E.
    Pereira, T.
    Shaw, A.
    Silburn, S.
    Thomas, B.
    Wiesen, S.
    Boerner, P.
    Borodin, D.
    Jachmich, S.
    Reiter, D.
    Sergienko, G.
    Stancar, Z.
    Viola, B.
    Beaumont, P.
    Bernardo, J.
    Coffey, I.
    Conway, N. J.
    de la Luna, E.
    Douai, D.
    Giroud, C.
    Hillesheim, J.
    Horvath, L.
    Huber, A.
    Lomas, P.
    Maggi, C. F.
    Maslov, M.
    von Thun, C. Perez
    Scully, S.
    Vianello, N.
    Wischmeier, M.
    NUCLEAR MATERIALS AND ENERGY, 2023, 34
  • [2] Comparison of the scrape-off layer two-point model for deuterium and helium plasmas in JET ITER-like wall low-confinement plasma conditions
    Rees, David
    Sissonen, Joona
    Groth, Mathias
    Rikala, Vesa-Pekka
    Kumpulainen, Henri
    Thomas, Beth
    Brix, Mathias
    CONTRIBUTIONS TO PLASMA PHYSICS, 2024, 64 (7-8)
  • [3] Variation in the volumetric power and momentum losses in the JET-ILW scrape-off layer
    Lomanowski, B.
    Park, J. S.
    Aho-Mantila, L.
    Brix, M.
    Groth, M.
    Lowry, C.
    Guillemaut, C.
    Marsen, S.
    Meigs, A.
    Wischmeier, M.
    NUCLEAR MATERIALS AND ENERGY, 2023, 35
  • [4] Characterization of detachment inferred from the Balmer line ratios in JET-ILW low-confinement mode plasmas
    Rikala, Vesa-Pekka
    Groth, M.
    Meigs, A. G.
    Reiter, D.
    Lomanowski, B.
    Shaw, A.
    Aleiferis, S.
    Corrigan, G.
    Carvalho, I. S.
    Harting, D.
    Horsten, N.
    Jepu, I.
    Karhunen, J.
    Lawson, K. D.
    Lowry, C.
    Menmuir, S.
    Thomas, B.
    Borodin, D.
    Douai, D.
    Huber, A.
    NUCLEAR MATERIALS AND ENERGY, 2025, 42
  • [5] Validation of SOLPS-ITER simulations with kinetic, fluid, and hybrid neutral models for JET-ILW low-confinement mode plasmas
    Horsten, N.
    Groth, M.
    Dekeyser, W.
    Van Uytven, W.
    Aleiferis, S.
    Carli, S.
    Karhunen, J.
    Lawson, K. D.
    Lomanowski, B.
    Meigs, A. G.
    Menmuir, S.
    Shaw, A.
    Solokha, V.
    Thomas, B.
    NUCLEAR MATERIALS AND ENERGY, 2022, 33
  • [6] Characterization of scrape-off layer transport in JET limiter plasmas
    Silva, C.
    Arnoux, G.
    Devaux, S.
    Frigione, D.
    Groth, M.
    Horacek, J.
    Lomas, P. J.
    Marsen, S.
    Matthews, G.
    Meneses, L.
    Pitts, R. A.
    NUCLEAR FUSION, 2014, 54 (08)
  • [7] Pedestal and scrape-off layer dynamics in ELMy H-mode plasmas in JET
    Beurskens, M. N. A.
    Alfier, A.
    Alper, B.
    Balboa, I.
    Flanagan, J.
    Fundamenski, W.
    Giovannozzi, E.
    Kempenaars, M.
    Loarte, A.
    Lomas, P.
    de la Luna, E.
    Nunes, I.
    Pasqualotto, R.
    Pitts, R. A.
    Saibene, G.
    Walsh, M.
    Wiesen, S.
    NUCLEAR FUSION, 2009, 49 (12)
  • [8] Divertor plasma conditions and neutral dynamics in horizontal and vertical divertor configurations in JET-ILW low confinement mode plasmas
    Groth, M.
    Brezinsek, S.
    Belo, P.
    Brix, M.
    Calabro, G.
    Chankin, A.
    Clever, M.
    Coenen, J. W.
    Corrigan, G.
    Drewelow, P.
    Guillemaut, C.
    Harting, D.
    Huber, A.
    Jachmich, S.
    Jarvinen, A.
    Kruezi, U.
    Lawson, K. D.
    Lehnen, M.
    Maggi, C. F.
    Marchetto, C.
    Marsen, S.
    Maviglia, F.
    Meigs, A. G.
    Moulton, D.
    Silva, C.
    Stamp, M. F.
    Wiesen, S.
    JOURNAL OF NUCLEAR MATERIALS, 2015, 463 : 471 - 476
  • [9] DEPOSITION OF CARBON AND BERYLLIUM AND RETENTION OF DEUTERIUM ON PROBES IN THE SCRAPE-OFF LAYER OF JET
    BERGSAKER, H
    COAD, JP
    BEHRISCH, R
    CLEMENT, S
    LAMA, F
    MARTINELLI, AP
    PROZESKY, VM
    ROVER, G
    SIMPSON, JCB
    JOURNAL OF NUCLEAR MATERIALS, 1990, 176 : 941 - 946
  • [10] Intermittent fluctuations in the Alcator C-Mod scrape-off layer for ohmic and high confinement mode plasmas
    Garcia, O. E.
    Kube, R.
    Theodorsen, A.
    LaBombard, B.
    Terry, J. L.
    PHYSICS OF PLASMAS, 2018, 25 (05)