Progress toward fully noninductive, high beta conditions in DIII-D

被引:47
作者
Murakami, M. [1 ]
Wade, M. R.
Greenfield, C. M.
Luce, T. C.
Ferron, J. R.
John, H. E. St.
DeBoo, J. C.
Heidbrink, W. W.
Luo, Y.
Makowski, M. A.
Osborne, T. H.
Petty, C. C.
Politzer, P. A.
Allen, S. L.
Burrell, K. H.
Casper, T. A.
Doyle, E. J.
Garofalo, A. M.
Gohil, P.
Gorelov, I. A.
Groebner, R. J.
Hyatt, A. W.
Jayakumar, R. J.
Kajiwara, K.
Kessel, C. E.
Kinsey, J. E.
La Haye, R. J.
Lao, L. L.
Leonard, A. W.
Lohr, J.
Petrie, T. W.
Pinsker, R. I.
Prater, R.
Rhodes, T. L.
Sips, A. C. C.
Staebler, G. M.
Taylor, T. S.
Vanzeeland, M. A.
Wang, G.
West, W. P.
Zeng, L.
机构
[1] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA
[2] Gen Atom, San Diego, CA 92186 USA
[3] Univ Calif Irvine, Irvine, CA 92697 USA
[4] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA
[5] Univ Texas, Austin, TX 78712 USA
[6] Univ Calif Los Angeles, Los Angeles, CA 90095 USA
[7] Columbia Univ, New York, NY 10027 USA
[8] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA
[9] Lehigh Univ, Bethlehem, PA 18015 USA
[10] EURATOM, Max Planck Inst Plasmaphys, D-85748 Garching, Germany
关键词
D O I
10.1063/1.2173627
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
The DIII-D Advanced Tokamak (AT) program in the DIII-D tokamak [J. L. Luxon, Plasma Physics and Controlled Fusion Research, 1986, Vol. I (International Atomic Energy Agency, Vienna, 1987), p. 159] is aimed at developing a scientific basis for steady-state, high-performance operation in future devices. This requires simultaneously achieving 100% noninductive operation with high self-driven bootstrap current fraction and toroidal beta. Recent progress in this area includes demonstration of 100% noninductive conditions with toroidal beta, beta(T)=3.6%, normalized beta, beta(N)=3.5, and confinement factor, H-89=2.4 with the plasma current driven completely by bootstrap, neutral beam current drive, and electron cyclotron current drive (ECCD). The equilibrium reconstructions indicate that the noninductive current profile is well aligned, with little inductively driven current remaining anywhere in the plasma. The current balance calculation improved with beam ion redistribution that was supported by recent fast ion diagnostic measurements. The duration of this state is limited by pressure profile evolution, leading to magnetohydrodynamic (MHD) instabilities after about 1 s or half of a current relaxation time (tau(CR)). Stationary conditions are maintained in similar discharges (similar to 90% noninductive), limited only by the 2 s duration (1 tau(CR)) of the present ECCD systems. By discussing parametric scans in a global parameter and profile databases, the need for low density and high beta are identified to achieve full noninductive operation and good current drive alignment. These experiments achieve the necessary fusion performance and bootstrap fraction to extrapolate to the fusion gain, Q=5 steady-state scenario in the International Thermonuclear Experimental Reactor (ITER) [R. Aymar , Fusion Energy Conference on Controlled Fusion and Plasma Physics, Sorrento, Italy (International Atomic Energy Agency, Vienna, 1987), paper IAEA-CN-77/OV-1]. The modeling tools that have been successfully employed to both plan and interpret the experiment are used to plan future DIII-D experiments with higher power and longer pulse ECCD and fast wave and co- and counterneutral beam injection in a pumped double-null configuration. The models predict our ability to control the current and pressure profiles to reach full noninductivity with increased beta, bootstrap fraction, and duration. The same modeling tools are applied to ITER, predicting favorable prospects for the success of the ITER steady-state scenario. (c) 2006 American Institute of Physics.
引用
收藏
页数:9
相关论文
共 38 条
[1]   DIFFUSION DRIVEN PLASMA CURRENTS AND BOOTSTRAP TOKAMAK [J].
BICKERTON, RJ ;
CONNOR, JW ;
TAYLOR, JB .
NATURE-PHYSICAL SCIENCE, 1971, 229 (04) :110-+
[2]   Optimization of DIII-D advanced tokamak discharges with respect to the β limit -: art. no. 056126 [J].
Ferron, JR ;
Casper, TA ;
Doyle, EJ ;
Garofalo, AM ;
Gohil, P ;
Greenfield, CM ;
Hyatt, AW ;
Jayakumar, RJ ;
Kessel, C ;
Kim, JY ;
Luce, TC ;
Makowski, MA ;
Menard, J ;
Murakami, M ;
Petty, CC ;
Politzer, PA ;
Taylor, TS ;
Wade, MR .
PHYSICS OF PLASMAS, 2005, 12 (05)
[3]   DETERMINATION OF THE NONINDUCTIVE CURRENT PROFILE IN TOKAMAK PLASMAS [J].
FOREST, CB ;
KUPFER, K ;
LUCE, TC ;
POLITZER, PA ;
LAO, LL ;
WADE, MR ;
WHYTE, DG ;
WROBLEWSKI, D .
PHYSICAL REVIEW LETTERS, 1994, 73 (18) :2444-2447
[4]   Complete suppression of neoclassical tearing modes with current drive at the electron-cyclotron-resonance frequency in ASDEX upgrade tokamak [J].
Gantenbein, G ;
Zohm, H ;
Giruzzi, G ;
Günter, S ;
Leuterer, F ;
Maraschek, M ;
Meskat, J ;
Yu, Q .
PHYSICAL REVIEW LETTERS, 2000, 85 (06) :1242-1245
[5]   Analysis and correction of intrinsic non-axisymmetric magnetic fields in high-β DIII-D plasmas [J].
Garofalo, AM ;
La Haye, RJ ;
Scoville, JT .
NUCLEAR FUSION, 2002, 42 (11) :1335-1339
[6]   Advanced tokamak research in DIII-D [J].
Greenfield, CM ;
Murakami, M ;
Ferron, JR ;
Wade, MR ;
Luce, TC ;
Petty, CC ;
Menard, JE ;
Petrie, TW ;
Allen, SL ;
Burrell, KH ;
Casper, TA ;
DeBoo, JC ;
Doyle, EJ ;
Garofalo, AM ;
Gorelov, IA ;
Groebner, RJ ;
Hobirk, J ;
Hyatt, AW ;
Jayakumar, RJ ;
Kessel, CE ;
La Haye, RJ ;
Jackson, GL ;
Lao, LL ;
Lohr, J ;
Makowski, MA ;
Pinsker, RI ;
Politzer, PA ;
Prater, R ;
Staebler, GM ;
Strait, EJ ;
Taylor, TS ;
West, WP .
PLASMA PHYSICS AND CONTROLLED FUSION, 2004, 46 :B213-B233
[7]   High performance advanced tokamak regimes in DIII-D for next-step experiments [J].
Greenfield, CM ;
Murakami, M ;
Ferron, JR ;
Wade, MR ;
Luce, TC ;
Petty, CC ;
Menard, JE ;
Petrie, TW ;
Allen, SL ;
Burrell, KH ;
Casper, TA ;
DeBoo, JC ;
Doyle, EJ ;
Garofalo, AM ;
Gorelov, IA ;
Groebner, RJ ;
Hobirk, J ;
Hyatt, AW ;
Jayakumar, RJ ;
Kessel, CE ;
La Haye, RJ ;
Jackson, GL ;
Lohr, J ;
Makowski, MA ;
Pinsker, RI ;
Politzer, PA ;
Prater, R ;
Strait, EJ ;
Taylor, TS ;
West, WP .
PHYSICS OF PLASMAS, 2004, 11 (05) :2616-2626
[8]  
Hawryluk R. J., 1980, PHYSICS PLASMAS CLOS, V1, P19
[9]   Hydrogenic fast-ion diagnostic using Balmer-alpha light [J].
Heidbrink, WW ;
Burrell, KH ;
Luo, Y ;
Pablant, NA ;
Ruskov, E .
PLASMA PHYSICS AND CONTROLLED FUSION, 2004, 46 (12) :1855-1875
[10]   Integrated modelling of the current profile in steady-state and hybrid ITER scenarios [J].
Houlberg, WA ;
Gormezano, C ;
Artaud, JF ;
Barbato, E ;
Basiuk, V ;
Becoulet, A ;
Bonoli, P ;
Budny, RV ;
Eriksson, LG ;
Farina, D ;
Gribov, Y ;
Harvey, RW ;
Hobirk, J ;
Imbeaux, F ;
Kessel, CE ;
St John, H ;
Volpe, F ;
Westerhof, E ;
Zvonkov, A .
NUCLEAR FUSION, 2005, 45 (11) :1309-1320