Fivefold confinement time increase in the Madison Symmetric Torus using inductive poloidal current drive

被引:41
作者
Stoneking, MR
Lanier, NE
Prager, SC
Sarff, JS
Sinitsyn, D
机构
[1] Univ of Wisconsin-Madison, Madison
关键词
D O I
10.1063/1.872324
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
Current profile control is employed in the Madison Symmetric Torus [R. N. Dexter et al., Fusion Technol. 19, 131 (1991)] reversed field pinch to reduce the magnetic fluctuations responsible for anomalous transport. An inductive poloidal electric-field pulse is applied in the sense to fatten the parallel current profile, reducing the dynamo fluctuation amplitude required to sustain the equilibrium. This technique demonstrates a substantial reduction in fluctuation amplitude (as much as 50%), and improvement in energy confinement (from 1 to 5 ms); a record low fluctuation (0.8%) and record high temperature (615 eV) for this device were observed simultaneously during current drive experiments. Plasma beta increases by 50% and the Ohmic input power is three times lower. Particle confinement improves and plasma impurity contamination is reduced. The results of the transient current drive experiments provide motivation for continuing development of steady-state current profile control strategies for the reversed field pinch. (C) 1997 American Institute of Physics.
引用
收藏
页码:1632 / 1637
页数:6
相关论文
共 20 条
[1]   DRIFT-WAVE TURBULENCE EFFECTS ON MAGNETIC-STRUCTURE AND PLASMA TRANSPORT IN TOKAMAKS [J].
CALLEN, JD .
PHYSICAL REVIEW LETTERS, 1977, 39 (24) :1540-1543
[2]   RESISTIVE INSTABILITIES IN A DIFFUSE LINEAR PINCH [J].
COPPI, B ;
GREENE, JM ;
JOHNSON, JL .
NUCLEAR FUSION, 1966, 6 (02) :101-&
[3]   THE MADISON SYMMETRICAL TORUS [J].
DEXTER, RN ;
KERST, DW ;
LOVELL, TW ;
PRAGER, SC ;
SPROTT, JC .
FUSION TECHNOLOGY, 1991, 19 (01) :131-139
[4]   MEASUREMENT OF MAGNETIC FLUCTUATION-INDUCED ENERGY-TRANSPORT [J].
FIKSEL, G ;
PRAGER, SC ;
SHEN, W ;
STONEKING, M .
PHYSICAL REVIEW LETTERS, 1994, 72 (07) :1028-1031
[5]  
FREIDBERG JP, 1987, IDEAL MAGNETOHYDRODY, P122
[6]   FINITE-RESISTIVITY INSTABILITIES OF A SHEET PINCH [J].
FURTH, HP ;
KILLEEN, J ;
ROSENBLUTH, MN .
PHYSICS OF FLUIDS, 1963, 6 (04) :459-484
[7]   Power balance in a reversed-field-pinch plasma with partial poloidal current drive by neutral beams [J].
Hattori, K ;
Hirano, Y ;
Yagi, Y ;
Shimada, T ;
Hayase, K .
FUSION TECHNOLOGY, 1995, 28 (04) :1619-1633
[8]   NUMERICAL-SIMULATION OF FLUCTUATION SUPPRESSION VIA DC HELICITY INJECTION IN A REVERSED FIELD PINCH [J].
HO, YL .
NUCLEAR FUSION, 1991, 31 (02) :341-350
[9]   GLOBAL CONFINEMENT AND DISCRETE DYNAMO ACTIVITY IN THE MST REVERSED-FIELD PINCH [J].
HOKIN, S ;
ALMAGRI, A ;
ASSADI, S ;
BECKSTEAD, J ;
CHARTAS, G ;
CROCKER, N ;
CUDZINOVIC, M ;
DENHARTOG, D ;
DEXTER, R ;
HOLLY, D ;
PRAGER, S ;
REMPEL, T ;
SARFF, J ;
SCIME, E ;
SHEN, W ;
SPRAGINS, C ;
SPROTT, C ;
STARR, G ;
STONEKING, M ;
WATTS, C ;
NEBEL, R .
PHYSICS OF FLUIDS B-PLASMA PHYSICS, 1991, 3 (08) :2241-2246
[10]   REVERSED-FIELD PINCH STUDIES IN THE MADISON-SYMMETRICAL-TORUS [J].
HOKIN, S ;
ALMAGRI, A ;
CEKIC, M ;
CHAPMAN, B ;
CROCKER, N ;
DENHARTOG, DJ ;
FIKSEL, G ;
HENRY, J ;
JI, H ;
PRAGER, S ;
SARFF, J ;
SCIME, E ;
SHEN, W ;
STONEKING, M ;
WATTS, C .
JOURNAL OF FUSION ENERGY, 1993, 12 (03) :281-287