RADIATIVE LOSSES AND IMPROVEMENT OF PLASMA PARAMETERS AFTER GETTERING IN THE ADVANCED TOROIDAL FACILITY

被引:16
作者
ISLER, RC
CRUME, EC
HORTON, LD
MURAKAMI, M
BAYLOR, LR
BELL, GL
BIGELOW, TS
ENGLAND, AC
GLOWIENKA, JC
JERNIGAN, TC
LANGLEY, RA
MIODUSZEWSKI, PK
RASMUSSEN, DA
SIMPKINS, JE
WILGEN, JB
WING, WR
机构
[1] Fusion Energy Division, Oak Ridge National Laboratory, Oak Ridge, TN
关键词
D O I
10.1088/0029-5515/31/2/003
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 characteristics of plasmas in the Advanced Toroidal Facility (ATF) have proven to be strongly dependent on the type of wall conditioning employed. A succession of techniques, beginning with glow discharge cleaning and baking, and evolving to gettering with chromium and titanium, have led to progressive improvement of the plasma parameters. Gettering with titanium has reduced the low-Z impurity content by a factor of 3, lowered the radiated power by a factor of 2.5-3.5, and improved the control over the electron density. The maximum values achieved for stored energy, line averaged density and confinement times are 28 kJ, 1.2 x 10(14) cm -3 and 25 ms, respectively. These parameters are comparable to the best results achieved in the ISX-B tokamak which had the same average minor radius and one half the major radius of ATF. Quasi-steady operation for 200 ms of neutral beam injection (NBI) has been obtained in high density, titanium gettered plasmas without the collapses that were typical earlier periods of operation. Neon injection experiments have helped to delineate the limits on the global levels of radiation that can be maintained and have supported the conclusion that mechanisms other than radiative losses are important for initiating the collapses still observed in low density NBI plasmas.
引用
收藏
页码:245 / 259
页数:15
相关论文
共 10 条
[1]  
BEHRINGER K, 1987, JETR8708 JET JOINT U
[2]   IMPROVED CONFINEMENT WITH COUNTER NEUTRAL INJECTION INTO ASDEX [J].
GEHRE, O ;
GRUBER, O ;
MURMANN, HD ;
ROBERTS, DE ;
WAGNER, F ;
BOMBA, B ;
EBERHAGEN, A ;
FAHRBACH, HU ;
FUSSMANN, G ;
GERNHARDT, J ;
HUBNER, K ;
JANESCHITZ, G ;
LACKNER, K ;
MULLER, ER ;
NIEDERMEYER, H ;
ROHR, H ;
STAUDENMAIER, G ;
STEUER, KH ;
VOLLMER, O .
PHYSICAL REVIEW LETTERS, 1988, 60 (15) :1502-1505
[3]  
HORTON LD, 1990, CONTROLLED FUSIO B 2, V14, P447
[4]  
HOWE HC, 1989, CONTROLLED FUSIO B 2, V13, P683
[5]   SPECTROSCOPIC STUDIES OF PLASMA COLLAPSE IN THE ADVANCED TOROIDAL FACILITY [J].
ISLER, RC ;
CRUME, EC ;
HORTON, LD ;
HOWE, HC ;
VORONOV, GS .
NUCLEAR FUSION, 1989, 29 (08) :1384-1390
[6]   INFLUENCE OF NEUTRAL-BEAM INJECTION ON IMPURITY TRANSPORT IN THE ISX-B TOKAMAK [J].
ISLER, RC ;
MURRAY, LE ;
KASAI, S ;
ARNURIUS, DE ;
BATES, SC ;
CRUME, EC ;
DUNLAP, JL ;
EDMONDS, PH ;
LAZARUS, EA ;
MURAKAMI, M ;
PARE, VK ;
SALTMARSH, MJ ;
SWAIN, DW ;
THOMAS, CE .
PHYSICAL REVIEW LETTERS, 1981, 47 (09) :649-652
[7]   TEMPERATURE BEHAVIOR DURING NEUTRAL BEAM INJECTION IN A TORSATRON (ATF) WITH FIELD ERRORS [J].
ISLER, RC ;
HORTON, LD ;
VORONOV, GS ;
CRUME, EC ;
BELL, GL ;
GANDY, RF ;
HARRIS, JH ;
GLOWIENKA, JC ;
MURAKAMI, M ;
NEILSON, GH ;
RASMUSSEN, DA ;
WILGEN, JB ;
WING, WR .
NUCLEAR FUSION, 1989, 29 (08) :1391-1397
[8]   THE ADVANCED TOROIDAL FACILITY [J].
LYON, JF ;
CARRERAS, BA ;
CHIPLEY, KK ;
COLE, MJ ;
HARRIS, JH ;
JERNIGAN, TC ;
JOHNSON, RL ;
LYNCH, VE ;
NELSON, BE ;
ROME, JA ;
SHEFFIELD, J ;
THOMPSON, PB .
FUSION TECHNOLOGY, 1986, 10 (02) :179-226
[9]   IMPROVEMENT OF PLASMA PERFORMANCE WITH CHROMIUM GETTERING IN ISX-B [J].
MIODUSZEWSKI, PK ;
ISLER, RC ;
SIMPKINS, JE ;
EDMONDS, PH ;
LAZARUS, EA ;
MA, CH ;
MURAKAMI, M .
NUCLEAR FUSION, 1987, 27 (02) :195-203
[10]  
Post D. E., 1977, Atomic Data and Nuclear Data Tables, V20, P397, DOI 10.1016/0092-640X(77)90026-2