The improved H-mode at ASDEX Upgrade:: a candidate for an ITER hybrid sceanario

被引:55
|
作者
Staebler, A [1 ]
Sips, ACC
Brambilla, M
Bilato, R
Dux, R
Gruber, O
Hobirk, J
Horton, LD
Maggi, CF
Manini, A
Maraschek, M
Mück, A
Na, YS
Neu, R
Tardini, G
Wade, MR
机构
[1] EURATOM, Max Planck Inst Plasmaphys, D-85748 Garching, Germany
[2] Korea Basic Sci Inst, Taejon 305333, South Korea
[3] Oak Ridge Natl Lab, Oak Ridge, TN USA
关键词
D O I
10.1088/0029-5515/45/7/009
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
A stationary regime with improved confinement (H-98(y,H-2) > 1) and, simultaneously, improved stability (beta(N) > 2.5) compared to standard H-mode has been investigated on ASDEX Upgrade for many years. This so-called 'improved H-mode' is characterized by a q-profile with low central magnetic shear and q(0) >= 1 that is obtained by early heating during the current ramp. Studies of this discharge scenario have been continued. New results are presented concerning the existence domain in the q(95) range, the dependence on the normalized Larmor radius rho(i)* and initial experiments showing that high performance improved H-modes can be obtained with strong central ion cyclotron resonance heating (ICRH). In addition, the present status of understanding of the improved H-mode is reviewed. Improved H-mode plasmas are documented for 3.2 < q(95) < 4.5 and n(e)/n(GW) up to 0.85. At low densities the normalized collisionality nu* is close to the ITER value and within the range of rho(i)*, accessible in ASDEX Upgrade, no dependence of the performance on this parameter was found. When compared with standard H-mode, core transport is still governed by drift-wave turbulence. Impurity control is achieved by central wave heating. The improved stability is due to the q-profile: by q(0) > 1 sawteeth as the main trigger of large amplitude neoclassical tearing modes are avoided. The stability is eventually limited by the occurrence of a mode with poloidal mode number m = 2 and toroidal mode number n = 1 at typically beta(N) similar to 3. As far as the reactor relevance of this regime is concerned, its compatibility with significant central electron heating by ICRH, with high edge densities and low amplitude edge localized modes is of importance. The improved H-mode is, therefore, seen as a candidate for a long pulse ITER 'hybrid' operation.
引用
收藏
页码:617 / 625
页数:9
相关论文
共 50 条
  • [31] Disruption avoidance and investigation of the H-Mode density limit in ASDEX Upgrade
    Sieglin, B.
    Maraschek, M.
    Gude, A.
    Klossek, F.
    Felici, F.
    Bernert, M.
    Kudlacek, O.
    Pau, A.
    Treutterer, W.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2024, 66 (02)
  • [32] H-mode confinement properties close to the power threshold in ASDEX Upgrade
    Ryter, F.
    Fuchs, J. C.
    Schneider, W.
    Sips, A. C. C.
    Staebler, A.
    Stober, J.
    11TH IAEA TECHNICAL MEETING ON H-MODE PHYSICS AND TRANSPORT BARRIERS, 2008, 123
  • [33] L- to H-mode transitions at low density in ASDEX Upgrade
    Sauter, P.
    Puetterich, T.
    Ryter, F.
    Viezzer, E.
    Wolfrum, E.
    Conway, G. D.
    Fischer, R.
    Kurzan, B.
    McDermott, R. M.
    Rathgeber, S. K.
    NUCLEAR FUSION, 2012, 52 (01)
  • [34] Stationary H-mode discharges with internal transport barrier on ASDEX upgrade
    Gruber, O
    Wolf, RC
    Dux, R
    Fuchs, C
    Günter, S
    Kallenbach, A
    Lackner, K
    Maraschek, M
    McCarthy, PJ
    Meister, H
    Pereversev, G
    Ryter, F
    Schweinzer, J
    Seidel, U
    Sesnic, S
    Stäbler, A
    Stober, J
    PHYSICAL REVIEW LETTERS, 1999, 83 (09) : 1787 - 1790
  • [35] Overview of L- to H-mode transition experiments at ASDEX Upgrade
    Plank, U.
    McDermott, R. M.
    Birkenmeier, G.
    Bonanomi, N.
    Cavedon, M.
    Conway, G. D.
    Eich, T.
    Griener, M.
    Grover, O.
    Schneider, P. A.
    Willensdorfer, M.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2023, 65 (01)
  • [36] The H-mode density limit in the full tungsten ASDEX Upgrade tokamak
    Bernert, M.
    Eich, T.
    Kallenbach, A.
    Carralero, D.
    Huber, A.
    Lang, P. T.
    Potzel, S.
    Reimold, F.
    Schweinzer, J.
    Viezzer, E.
    Zohm, H.
    PLASMA PHYSICS AND CONTROLLED FUSION, 2015, 57 (01)
  • [37] OBSERVATION OF CONTINUOUS DIVERTOR DETACHMENT IN H-MODE DISCHARGES IN ASDEX UPGRADE
    GRUBER, O
    KALLENBACH, A
    KAUFMANN, M
    LACKNER, K
    MERTENS, V
    NEUHAUSER, J
    RYTER, F
    ZOHN, H
    BESSENRODTWEBERPALS, M
    BUCHL, K
    FIEDLER, S
    FIELD, A
    FUCHS, C
    GARCIAROSALES, C
    HAAS, G
    HERRMANN, A
    HERRMANN, W
    HIRSCH, S
    KOPPENDORFER, W
    LANG, P
    LIEDER, G
    MAST, KF
    PITCHER, CS
    SCHITTENHELM, M
    STOBER, J
    SUTTROP, W
    TROPPMANN, M
    WEINLICH, M
    ALBRECHT, M
    ALEXANDER, M
    ASMUSSEN, K
    BALLICO, M
    BEHLER, K
    BEHRINGER, K
    BOSCH, HS
    BRAMBILLA, M
    CARLSON, A
    COSTER, D
    CUPIDO, L
    DEBLANK, HJ
    HEMPEL, SD
    DESCHKA, S
    DORN, C
    DRUBE, R
    DUX, R
    EBERHAGEN, A
    ENGELHARDT, W
    FAHRBACH, HU
    FEIST, HU
    FIEG, D
    PHYSICAL REVIEW LETTERS, 1995, 74 (21) : 4217 - 4220
  • [38] The performance of improved H-modes at ASDEX upgrade and projection to ITER
    Sips, A. C. C.
    Tardini, G.
    Forest, C. B.
    Gruber, O.
    McCarthy, P. J.
    Gude, A.
    Horton, L. D.
    Igochine, V.
    Kardaun, O.
    Maggi, C. F.
    Maraschek, M.
    Mertens, V.
    Neu, R.
    Peeters, A. G.
    Pereverzev, G. V.
    Staebler, A.
    Stober, J.
    Suttrop, W.
    NUCLEAR FUSION, 2007, 47 (11) : 1485 - 1498
  • [39] THE H-MODE IN THE ASDEX TOKAMAK
    HOLZHAUER, E
    DODEL, G
    ENDLER, M
    GERNHARDT, J
    GIANNONE, L
    MANSO, M
    MCCORMICK, K
    MERTENS, V
    NIEDERMEYER, H
    RUDYJ, A
    SERRA, F
    SILVA, A
    THEIMER, G
    VARELA, P
    WAGNER, F
    ZOHM, H
    PLASMA PHYSICS AND CONTROLLED FUSION, 1994, 36 (07) : A3 - A11
  • [40] Chapter 7: High-density H-mode operation in ASDEX Upgrade
    Stober, JK
    Lang, PT
    Mertens, V
    FUSION SCIENCE AND TECHNOLOGY, 2003, 44 (03) : 650 - 658