Quiescent double barrier high-confinement mode plasmas in the DIII-D tokamak

被引:185
作者
Burrell, KH
Austin, ME
Brennan, DP
DeBoo, JC
Doyle, EJ
Fenzi, C
Fuchs, C
Gohil, P
Greenfield, CM
Groebner, RJ
Lao, LL
Luce, TC
Makowski, MA
McKee, GR
Moyer, RA
Petty, CC
Porkolab, M
Rettig, CL
Rhodes, TL
Rost, JC
Stallard, BW
Strait, EJ
Synakowski, EJ
Wade, MR
Watkins, JG
West, WP
机构
[1] Gen Atom Co, San Diego, CA 92186 USA
[2] Univ Texas, Austin, TX 78712 USA
[3] Univ Calif Los Angeles, Los Angeles, CA 90024 USA
[4] Univ Wisconsin, Madison, WI 53706 USA
[5] Max Planck Inst Plasma Phys, Garching, Germany
[6] Lawrence Livermore Natl Lab, Livermore, CA USA
[7] Univ Calif San Diego, San Diego, CA 92103 USA
[8] MIT, Cambridge, MA 02139 USA
[9] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA
[10] Oak Ridge Natl Lab, Oak Ridge, TN USA
[11] Sandia Natl Labs, Albuquerque, NM 87185 USA
关键词
D O I
10.1063/1.1355981
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
High-confinement (H-mode) operation is the choice for next-step tokamak devices based either on conventional or advanced tokamak physics. This choice, however, comes at a significant cost for both the conventional and advanced tokamaks because of the effects of edge localized modes (ELMs). ELMs can produce significant erosion in the divertor and can affect the beta limit and reduced core transport regions needed for advanced tokamak operation. Experimental results from DIII-D [J. L. Luxon , Plasma Physics and Controlled Nuclear Fusion Research 1986 (International Atomic Energy Agency, Vienna, 1987), Vol. I, p. 159] this year have demonstrated a new operating regime, the quiescent H-mode regime, which solves these problems. We have achieved quiescent H-mode operation that is ELM-free and yet has good density and impurity control. In addition, we have demonstrated that an internal transport barrier can be produced and maintained inside the H-mode edge barrier for long periods of time (>3.5 s or > 25 energy confinement times tau (E)), yielding a quiescent double barrier regime. By slowly ramping the input power, we have achieved beta H-N(89)=7 for up to 5 times the tau (E) of 150 ms. The beta H-N(89) values of 7 substantially exceed the value of 4 routinely achieved in the standard ELMing H mode. The key factors in creating the quiescent H-mode operation are neutral beam injection in the direction opposite to the plasma current (counter injection) plus cryopumping to reduce the density. Density and impurity control in the quiescent H mode is possible because of the presence of an edge magnetohydrodynamic (MHD) oscillation, the edge harmonic oscillation, which enhances the edge particle transport while leaving the energy transport unaffected. (C) 2001 American Institute of Physics.
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收藏
页码:2153 / 2162
页数:10
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