First island divertor experiments on the W7-AS stellarator

被引:117
作者
Grigull, P [1 ]
McCormick, K [1 ]
Baldzuhn, J [1 ]
Burhenn, R [1 ]
Brakel, R [1 ]
Ehmler, H [1 ]
Feng, Y [1 ]
Gadelmeier, F [1 ]
Giannone, L [1 ]
Hartmann, D [1 ]
Hildebrandt, D [1 ]
Hirsch, M [1 ]
Jaenicke, R [1 ]
Kisslinger, J [1 ]
Knauer, J [1 ]
König, R [1 ]
Kühner, G [1 ]
Laqua, H [1 ]
Naujoks, D [1 ]
Niedermeyer, H [1 ]
Ramasubramanian, N [1 ]
Rust, N [1 ]
Sardei, F [1 ]
Wagner, F [1 ]
Weller, A [1 ]
Wenzel, U [1 ]
机构
[1] Max Planck Inst Plasma Phys, EURATOM Assoc, D-85748 Garching, Germany
关键词
D O I
10.1088/0741-3335/43/12A/313
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
W7-AS has recently been equipped with ten open divertor modules in order to experimentally evaluate the island divertor concept. First results are reported in this paper. The new divertors enable access to a new NBI-heated, very high density (up to (n) over bar (e) = 3.5 x 10(20) m(-3)) operating regime with promising confinement properties. The energy confinement time increases steeply with density and then saturates. In contrast, the particle and impurity confinement times decrease with increasing density. This allows full density control and quasi-steady-state operation also under conditions of partial detachment from the divertor targets. Radiated power fractions are low to moderate in attached regimes and reach up to about 90% in detachment scenarios. The radiation always stays peaked at the edge. The extremely high densities necessitated the development of non-standard heating techniques for central heating. For the first time efficient heating of an NBI target plasma by electron Bernstein waves (140GHz, second harmonic) is achieved. In addition, this heating scenario enables fine tuning of the upstream boundary conditions for divertor operation.
引用
收藏
页码:A175 / A193
页数:19
相关论文
共 24 条
[1]   ESTIMATION OF THE MAXIMUM DIVERTOR RADIATIVE FRACTION IN THE PRESENCE OF A NEUTRAL CUSHION [J].
BORRASS, K ;
JANESCHITZ, G .
NUCLEAR FUSION, 1994, 34 (09) :1203-1211
[2]  
BURHENN R., 1995, P 22 C CONTROLLED FU, V19C, P145
[3]  
BURHENN R, 1997, P 24 EPS C CONTR FUS, V21, P1609
[4]   3D fluid modelling of the edge plasma by means of a Monte Carlo technique [J].
Feng, Y ;
Sardei, F ;
Kisslinger, J .
JOURNAL OF NUCLEAR MATERIALS, 1999, 266 :812-818
[5]  
FENG Y, 1999, 26 EPS C CONTR FUS J, V23, P1465
[6]   Studies in JET diverters of varied geometry.: I:: Non-seeded plasma operation [J].
Horton, LD ;
Vlases, GC ;
Andrew, P ;
Bhatnagar, VP ;
Chankin, AV ;
Clement, S ;
Conway, GD ;
Davies, SJ ;
de Haas, JCM ;
Ehrenberg, JK ;
Fishpool, GM ;
Gauthier, E ;
Guo, HY ;
Harbour, PJ ;
Ingesson, LC ;
Jäckel, HJ ;
Lingertat, J ;
Loarte, A ;
Lowry, CG ;
Maggi, CF ;
Matthews, GF ;
McCracken, GM ;
Mohanti, R ;
Monk, RD ;
Reichle, R ;
Righi, E ;
Saibene, G ;
Sartori, R ;
Simonini, R ;
Stamp, MF ;
Taroni, A ;
Thomsen, K .
NUCLEAR FUSION, 1999, 39 (01) :1-17
[7]   PLASMA BOUNDARY-LAYER IN LIMITER AND DIVERTOR TOKAMAKS [J].
KEILHACKER, M ;
LACKNER, K ;
BEHRINGER, K ;
MURMANN, H ;
NIEDERMEYER, H .
PHYSICA SCRIPTA, 1982, T2 :443-453
[8]  
KISSLINGER J, 1994, 21 EUR C CONTR FUS B, V18, P368
[9]   SCALING AND TRANSPORT ANALYSIS OF DIVERTOR CONDITIONS ON THE ALCATOR C-MOD TOKAMAK [J].
LABOMBARD, B ;
GOETZ, J ;
KURZ, C ;
JABLONSKI, D ;
LIPSCHULTZ, B ;
MCCRACKEN, G ;
NIEMCZEWSKI, A ;
BOIVIN, RL ;
BOMBARDA, F ;
CHRISTENSEN, C ;
FAIRFAX, S ;
FIORE, C ;
GARNIER, D ;
GRAF, M ;
GOLOVATO, S ;
GRANETZ, R ;
GREENWALD, M ;
HORNE, S ;
HUBBARD, A ;
HUTCHINSON, I ;
IRBY, J ;
KESNER, J ;
LUKE, T ;
MARMAR, E ;
MAY, M ;
OSHEA, P ;
PORKOLAB, M ;
REARDON, J ;
RICE, J ;
SCHACHTER, J ;
SNIPES, J ;
STEK, P ;
TAKASE, Y ;
TERRY, J ;
TINIOS, G ;
WATTERSON, R ;
WELCH, B ;
WOLFE, S .
PHYSICS OF PLASMAS, 1995, 2 (06) :2242-2248
[10]  
LAQUA HP, 1998, PRL, V81, P20601