Comparing pedestal structure in JET-ILW H-mode plasmas with a model for stiff ETG turbulent heat transport

被引:15
|
作者
Field, A. R. [1 ]
Chapman-Oplopoiou, B. [1 ]
Connor, J. W. [1 ]
Frassinetti, L. [2 ]
Hatch, D. R. [3 ]
Roach, C. M. [1 ]
Saarelma, S. [1 ]
JET Contributors
机构
[1] Culham Ctr Fus Energy, Culham Sci Ctr, United Kingdom Atom Energy Authority, Abingdon OX14, England
[2] KTH Royal Inst Technol, Div Fus Plasma Phys, SE-10044 Stockholm, Sweden
[3] Univ Texas Austin, Inst Fus Studies, Austin, TX 78712 USA
关键词
pedestal; H-mode; heat transport; stiffness; turbulence; ETG; IMPROVED CONFINEMENT; HIGH-BETA;
D O I
10.1098/rsta.2021.0228
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
A predictive model for the electron temperature profile of the H-mode pedestal is described, and its results are compared with the pedestal structure of JET-ILW plasmas. The model is based on a scaling for the gyro-Bohm normalized, turbulent electron heat flux qe/qe,gB resulting from electron temperature gradient (ETG) turbulence, derived from results of nonlinear gyrokinetic (GK) calculations for the steep gradient region. By using the local temperature gradient scale length L-Te in the normalization, the dependence of q(e)/q(e,g)B on the normalized gradients R/L-Te and R/(Lne) can be represented by a unified scaling with the parameter eta(e) = L-ne/L-Te, to which the linear stability of ETG turbulence is sensitive when the density gradient is sufficiently steep. For a prescribed density profile, the value of R/L-Te determined from this scaling, required to maintain a constant electron heat flux qe across the pedestal, is used to calculate the temperature profile. Reasonable agreement with measurements is found for different cases, the model providing an explanation of the relative widths and shifts of the T-e and n(e) profiles, as well as highlighting the importance of the separatrix boundary conditions. Other cases showing disagreement indicate conditions where other branches of turbulence might dominate.This article is part of a discussion meeting issue "H-mode transition and pedestal studies in fusion plasmas'.
引用
收藏
页数:16
相关论文
共 50 条
  • [11] The dependence of confinement on the isotope mass in the core and the edge of AUG and JET-ILW H-mode plasmas
    Schneider, P. A.
    Angioni, C.
    Frassinetti, L.
    Horvath, L.
    Maslov, M.
    Auriemma, F.
    Cavedon, M.
    Challis, C. D.
    Delabie, E.
    Dunne, M. G.
    Climent, J. M. Fontdecaba
    Hobirk, J.
    Kappatou, A.
    Keeling, D. L.
    Kurzan, B.
    Lennholm, M.
    Lomanowski, B.
    Maggi, C. F.
    McDermott, R. M.
    Puetterich, T.
    Thorman, A.
    Willensdorfer, M.
    NUCLEAR FUSION, 2022, 62 (02)
  • [12] Isotope mass dependence of pedestal transport in JET H-mode plasmas
    Predebon, I.
    Hatch, D. R.
    Frassinetti, L.
    Horvath, L.
    Saarelma, S.
    Chapman-Oplopoiou, B.
    Goerler, T.
    Maggi, C. F.
    NUCLEAR FUSION, 2023, 63 (03)
  • [13] Pedestal structure in H-mode plasmas
    Urano, Hajime
    NUCLEAR FUSION, 2014, 54 (11)
  • [14] Parameter dependencies of the separatrix density in low triangularity L-mode and H-mode JET-ILW plasmas
    Lomanowski, B.
    Rubino, G.
    Uccello, A.
    Dunne, M.
    Vianello, N.
    Aleiferis, S.
    Canik, J.
    Carvalho, I.
    Corrigan, G.
    Frassinetti, L.
    Frigione, D.
    Garzotti, L.
    Groth, M.
    Meigs, A.
    Maslov, M.
    von Thun, C. Perez
    Rimini, F.
    Schneider, P. A.
    Sergienko, G.
    Simpson, J.
    Van Eester, D.
    JET Contributors
    NUCLEAR FUSION, 2023, 63 (03)
  • [15] The dependence of exhaust power components on edge gradients in JET-C and JET-ILW H-mode plasmas
    Field, A. R.
    Challis, C. D.
    Fontdecaba, J. M.
    Frassinetti, L.
    Horvath, L.
    Kim, Hyun-Tae
    Maggi, C.
    Roach, C. M.
    Saarelma, S.
    Sertoli, M.
    Szepeisi, G.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2020, 62 (05)
  • [16] Impact of localized gas injection on ICRF coupling and SOL parameters in JET-ILW H-mode plasmas
    Lerche, E.
    Goniche, M.
    Jacquet, P.
    Van Eester, D.
    Bobkov, V.
    Colas, L.
    Czarnecka, A.
    Brezinsek, S.
    Brix, M.
    Crombe, K.
    Graham, M.
    Groth, M.
    Monakhov, I.
    Mathurin, T.
    Matthews, G.
    Meneses, L.
    Noble, C.
    Petrzilka, V.
    Rimini, F.
    Shaw, A.
    JOURNAL OF NUCLEAR MATERIALS, 2015, 463 : 634 - 639
  • [17] The role of edge plasma parameters in H-mode density limit on the JET-ILW
    Sun, H. J.
    Goldston, R. J.
    Huber, A.
    Xu, X. Q.
    Flanagan, J.
    McDonald, D. C.
    de la Luna, E.
    Maslov, M.
    Harrison, J. R.
    Militello, F.
    Fessey, J.
    Cramp, S.
    NUCLEAR FUSION, 2021, 61 (06)
  • [18] Dimensionless scalings of confinement, heat transport and pedestal stability in JET-ILW and comparison with JET-C
    Frassinetti, L.
    Saarelma, S.
    Lomas, P.
    Nunes, I.
    Rimini, F.
    Beurskens, M. N. A.
    Bilkova, P.
    Boom, J. E.
    de la Luna, E.
    Delabie, E.
    Drewelow, P.
    Flanagan, J.
    Garzotti, L.
    Giroud, C.
    Hawks, N.
    Joffrin, E.
    Kempenaars, M.
    Kim, Hyun-Tae
    Kruezi, U.
    Loarte, A.
    Lomanowski, B.
    Lupelli, I.
    Meneses, L.
    Maggi, C. F.
    Menmuir, S.
    Peterka, M.
    Rachlew, E.
    Romanelli, M.
    Stefanikova, E.
    Abhangi, M.
    Abreu, P.
    Aftanas, M.
    Afzal, M.
    Aggarwal, K. M.
    Aho-Mantila, L.
    Ahonen, E.
    Aints, M.
    Airila, M.
    Albanese, R.
    Alegre, D.
    Alessi, E.
    Aleynikov, P.
    Alfier, A.
    Alkseev, A.
    Allan, P.
    Almaviva, S.
    Alonso, A.
    Alper, B.
    Alsworth, I.
    Alves, D.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2017, 59 (01)
  • [19] Pedestal transport in H-mode plasmas for fusion gain
    Kotschenreuther, M.
    Hatch, D. R.
    Mahajan, S.
    Valanju, P.
    Zheng, L.
    Liu, X.
    NUCLEAR FUSION, 2017, 57 (06)
  • [20] Effect of the isotope mass on the turbulent transport at the edge of L-mode plasmas in ASDEX Upgrade and JET-ILW
    Bonanomi, N.
    Angioni, C.
    Crandall, P. C.
    Di Siena, A.
    Maggi, C. F.
    Schneider, P. A.
    NUCLEAR FUSION, 2019, 59 (12)