Radio-frequency wave physics in the FTU

被引:12
作者
Granucci, G [1 ]
Airoldi, A
Barbato, E
Bruschi, A
Cardinali, A
Castaldo, C
Cesario, R
Cirant, S
Esposito, B
Farina, D
Gandini, F
Giruzzi, G
Gormezano, C
Leigheb, M
Marinucci, M
Mirizzi, F
Nowak, S
Panaccione, L
Pericoli-Ridolfini, V
Podda, S
Ramponi, G
Ravera, GL
Saveliev, AN
Simonetto, A
Sozzi, C
Tuccillo, AA
Zonca, F
机构
[1] EURATOM, ENEA, CNR Fus, Ist Fis Plasma, Milan, Italy
[2] EURATOM, ENEA Fus, CR Frascati, Rome, Italy
[3] EURATOM, CEA Fus, Cadarache, France
[4] Russian Acad Sci, AF Ioffe Physicotech Inst, St Petersburg 196140, Russia
关键词
LHCD physics; ECRF physics; IBW physics;
D O I
10.13182/FST04-A521
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
This chapter reports the main physics results obtained with three radio-frequency-injection systems. The frequency of 8 GHz for the lower hybrid (LH) current drive (CD) (LHCD) system was chosen to explore CD at high density: full CD has been demonstrated for central densities up to 1.4 x 10(20) m(-3) at 0.5 MA with an applied power up to 2.0 MW. The Frascati Tokamak Upgrade (FTU) database shows CD efficiencies from 0.1 to 0.3 x 10(20) AW(-1) m(-2). In combined experiments with electron cyclotron (EC) waves (140 GHz, up to 1.2 MW), a supra-thermal absorption by the fast electron tail generated by LHCD has been observed in both downshifted and upshifted interaction regimes, with the resulting electron cyclotron current drive (ECCD) ranging from 20 to 100 kA, depending on experimental conditions. With pure EC resonance heating, the narrowness of the radial power deposition profile has been exploited, resulting in strong local electron heating. Results in high-density regimes are also presented. The third system (433 MHz, 0.5 MW) is the first to test ion Bernstein wave (IBW) coupling with a waveguide antenna. The experiment operates at high frequency, avoiding the occurrence of nonlinear phenomena at the edge. Improved confinement regimes resulting in a central peaking of the pressure profiles have been achieved with P-IBW up to 0.4 MW. Modeling and experimental results are summarized.
引用
收藏
页码:387 / 401
页数:15
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