Ion heat transport in electron cyclotron resonance heated L-mode plasma on the T-10 tokamak

被引:0
|
作者
Krupin, V. A. [1 ]
Nurgaliev, M. R. [1 ]
Nemets, A. R. [1 ]
Zemtsov, I. A. [1 ,2 ]
Suntsov, S. D. [1 ]
Myalton, T. B. [1 ]
Sergeev, D. S. [1 ]
Solovev, N. A. [1 ]
Sarychev, D. V. [1 ]
Ryjakov, D. V. [1 ]
Tugarinov, S. N. [3 ]
Naumenko, N. N. [4 ]
机构
[1] Natl Res Ctr, Kurchatov Inst, Moscow 123182, Russia
[2] Bauman Moscow State Tech Univ, Moscow 105005, Russia
[3] Inst Project Ctr ITER, Moscow 123098, Russia
[4] JSC SOLAR, Minsk 220034, BELARUS
关键词
tokamak; L-mode; electron cyclotron resonance heating; ion heat transport; CONFINEMENT;
D O I
10.1088/2058-6272/ad0c9c
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Anomalous ion heat transport is analyzed in the T-10 tokamak plasma heated with electron cyclotron resonance heating (ECRH) in second-harmonic extra-ordinary mode. Predictive modeling with empirical scaling for Ohmical heat conductivity shows that in ECRH plasmas the calculated ion temperature could be overestimated, so an increase of anomalous ion heat transport is required. To study this effect two scans are presented: over the EC resonance position and over the ECRH power. The EC resonance position varies from the high-field side to the low-field side by variation of the toroidal magnetic field. The scan over the heating power is presented with on-axis and mixed ECRH regimes. Discharges with high anomalous ion heat transport are obtained in all considered regimes. In these discharges the power balance ion heat conductivity exceeds the neoclassical level by up to 10 times. The high ion heat transport regimes are distinguished by three parameters: the ratio, the normalized electron density gradient , and the ion-ion collisionality . The combination of high , high , and -10 results in values of normalized anomalous ion heat fluxes up to 10 times higher than in the low transport scenario.
引用
收藏
页数:9
相关论文
共 50 条
  • [1] Ion heat transport in electron cyclotron resonance heated L-mode plasma on the T-10 tokamak
    V.A.KRUPIN
    M.R.NURGALIEV
    A.R.NEMETS
    I.A.ZEMTSOV
    S.D.SUNTSOV
    T.B.MYALTON
    D.S.SERGEEV
    N.A.SOLOVEV
    D.V.SARYCHEV
    D.V.RYJAKOV
    S.N.TUGARINOV
    N.N.NAUMENKO
    Plasma Science and Technology, 2024, 26 (04) : 57 - 65
  • [2] PLASMA-HEATING AT THE ELECTRON-CYCLOTRON RESONANCE IN THE T-10 TOKAMAK
    ALIKAEV, VV
    AGANOV, LI
    ARSENEV, YI
    BERLIZOV, AB
    BOGDANOV, SD
    BORSHEGOVSKII, AA
    BUZANKIN, VV
    VASIN, NL
    VERTINOROKH, AN
    VINOGRADOVA, ND
    VLASOV, SN
    GEGECHKORI, NM
    GORBUNOV, EP
    DOCHENKOV, AS
    ESINCHUK, YV
    EFREMOV, SL
    ZAVERYAEV, VS
    KISLOV, AY
    KONDRATEV, AA
    KURBATOV, VI
    LUKYANOV, SY
    MAKSIMOV, YS
    NOTKIN, GE
    ORLOV, VB
    PIMENOV, AB
    PONOV, IA
    RAZUMOVA, KA
    STRELKOV, VS
    TARAKANOV, AV
    USOV, VG
    FLYAGIN, VA
    KHROMKOV, IN
    SHEGLOV, DA
    JETP LETTERS, 1982, 35 (03) : 140 - 144
  • [3] Simulation of the Plasma Density Evolution during Electron Cyclotron Resonance Heating at the T-10 Tokamak
    Yu. N. Dnestrovskij
    V. A. Vershkov
    A. V. Danilov
    A. Yu. Dnestrovskij
    V. N. Zenin
    S. E. Lysenko
    A. V. Melnikov
    D. A. Shelukhin
    G. F. Subbotin
    S. V. Cherkasov
    Plasma Physics Reports, 2018, 44 : 1 - 17
  • [4] Simulation of the Plasma Density Evolution during Electron Cyclotron Resonance Heating at the T-10 Tokamak
    Dnestrovskij, Yu N.
    Vershkov, V. A.
    Danilov, A. V.
    Dnestrovskij, A. Yu
    Zenin, V. N.
    Lysenko, S. E.
    Melnikov, A. V.
    Shelukhin, D. A.
    Subbotin, G. F.
    Cherkasov, S. V.
    PLASMA PHYSICS REPORTS, 2018, 44 (01) : 1 - 17
  • [5] Ion heat transport in ohmic plasmas of the T-10 tokamak
    Klyuchnikov, L. A.
    Krupin, V. A.
    Nurgaliev, M. R.
    Nemets, A. R.
    Zemtsov, I. A.
    Ryjakov, D. V.
    Sarychev, D. V.
    XLIV ZVENIGOROD INTERNATIONAL CONFERENCE ON PLASMA PHYSICS AND CONTROLLED FUSION (ICPAF2017), 2017, 907
  • [6] L-MODE GLOBAL ENERGY CONFINEMENT SCALING FOR ION-CYCLOTRON HEATED TOKAMAK PLASMAS
    CHIN, RC
    LI, SH
    NUCLEAR FUSION, 1992, 32 (06) : 951 - 965
  • [7] Summary of experimental core turbulence characteristics in ohmic and electron cyclotron resonance heated discharges in T-10 tokamak plasmas
    Vershkov, VA
    Shelukhin, DA
    Soldatov, SV
    Urazbaev, AO
    Grashin, SA
    Eliseev, LG
    Melnikov, AV
    NUCLEAR FUSION, 2005, 45 (10) : S203 - S226
  • [8] BEHAVIOR OF THE ION TEMPERATURE DURING ELECTRON-CYCLOTRON HEATING IN THE T-10 TOKAMAK
    BAGDASAROV, AA
    BEREZOVSKII, EL
    EFREMOV, SL
    ZAVERYAEV, VS
    MEDVEDEV, AA
    JETP LETTERS, 1985, 41 (07) : 355 - 357
  • [9] Comparison of Plasma Heating at First and Second Electron Cyclotron Harmonics in the T-10 Tokamak
    Yu. N. Dnestrovskij
    A. V. Danilov
    A. Yu. Dnestrovskij
    L. A. Klyuchnikov
    S. E. Lysenko
    A. V. Melnikov
    A. R. Nemets
    M. R. Nurgaliev
    G. F. Subbotin
    N. A. Soloviev
    A. V. Sushkov
    D. Yu. Sychugov
    S. V. Cherkasov
    Plasma Physics Reports, 2020, 46 : 477 - 489
  • [10] Comparison of Plasma Heating at First and Second Electron Cyclotron Harmonics in the T-10 Tokamak
    Dnestrovskij, Yu. N.
    Danilov, A. V.
    Dnestrovskij, A. Yu.
    Klyuchnikov, L. A.
    Lysenko, S. E.
    Melnikov, A. V.
    Nemets, A. R.
    Nurgaliev, M. R.
    Subbotin, G. F.
    Soloviev, N. A.
    Sushkov, A. V.
    Sychugov, D. Yu.
    Cherkasov, S. V.
    PLASMA PHYSICS REPORTS, 2020, 46 (05) : 477 - 489