HEATING AND CONFINEMENT CHARACTERISTICS OF 2ND HARMONIC HEATING IN THE ION-CYCLOTRON RANGE OF FREQUENCIES ON THE JT-60 TOKAMAK

被引:10
作者
FUJII, T
KIMURA, H
SAIGUSA, M
MORIYAMA, S
HAMAMATSU, K
ANNOH, K
FUKUDA, T
ISHIDA, S
KOBAYASHI, N
KOIDE, Y
KUBO, H
KUSAMA, Y
NAGASHIMA, K
NEMOTO, M
NISHITANI, T
OGAWA, Y
SAKASAI, A
SATO, M
SHINOZAKI, S
SUGIE, T
TERAKADO, M
TOBITA, K
YOSHIDA, H
机构
[1] Naka Fusion Research Establishment, Japan Atomic Energy Research Institute, Naka-gun, Ibaraki, Naka-machi
[2] Toshiba Corporation, Chiyoda-ku, Tokyo
关键词
D O I
10.1088/0029-5515/31/1/013
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
Results are presented of the second harmonic heating experiments in the ion cyclotron range of frequencies (ICRF) on JT-60. Heating and confinement characteristics are investigated by using the hydrogen second harmonic (H-majority 2-omega-cH) scheme and the hydrogen minority second harmonic (H-minority 2-omega-cH) scheme (n(H)/n(He) almost-equal-to 0.1) in two toroidal phasing modes of antenna currents, in phase ((0, 0)) and out of phase ((pi, 0)), at P(IC) less-than-or-equal-to 3 MW, nBAR(e) = (1.3-6.6) x 10(19) m-3 and I(P) = 1-2.4 MA. Efficient plasma heating has been demonstrated in both heating schemes. Intense non-Maxwellian ion tails are observed at low density. Sawtooth oscillations with an enhanced period in the electron temperature are found over a wide range of electron densities. The incremental energy confinement time, tau-E(inc), for (pi, 0) phasing is larger than for (0, 0) phasing, irrespective of the heating scheme. In particular, H-minority 2-omega-cH heating with (pi, 0) phasing shows excellent plasma heating with tau-E(inc) almost-equal-to 100-120 ms, which is larger than that of neutral beam injection (NBI) heating by a factor of about two. Different dependences of tau-E(inc) on I(p) are obtained in the two heating schemes. The (0, 0) phasing data of tau-E(inc) in H-majority 2-omega-cH heating increase with I(p) up to 1.9 MA, while the (pi, 0) phasing data in H-minority 2-omega-cH heating are almost constant with I(p) up to 2.4 MA. The global energy confinement shows an L-mode behaviour. The energy confinement time for H-minority 2-omega-cH heating at high density agrees well with the Shimomura-Odajima scaling.
引用
收藏
页码:137 / 154
页数:18
相关论文
共 43 条
[21]   LARGE M=3/N=1 LOCKED MODE IN JT-60 AND ITS STABILIZATION [J].
NINOMIYA, H ;
ITAMI, K ;
NEYATANI, Y ;
NAITO, O ;
YOSHINO, R .
NUCLEAR FUSION, 1988, 28 (07) :1275-1281
[22]  
NOTERDAEME JM, 1989, PLASMA PHYS CONTROLL, V1, P583
[23]  
ODAJIMA K, 1984, HEATING TOROIDAL PLA, V1, P243
[24]  
ODAJIMA K, 1987, PLASMA PHYS CONTROLL, V1, P151
[25]  
ODAJIMA K, 1988, JAERIM88068 JAP AT E
[26]  
ONO M, 1987, PLASMA PHYS CONTROLL, V1, P477
[27]  
PORKOLAB M, 1987, PLASMA PHYS CONTROLL, V1, P509
[28]  
Saigusa M., 1987, AIP Conference Proceedings, P282, DOI 10.1063/1.36708
[29]  
SAIGUSA M, 1989, RADIO FREQUENCY POWE, P326
[30]  
Shimomura Y., 1987, Comments on Plasma Physics and Controlled Fusion, V10, P207