Transport studies in the FTU

被引:2
作者
Esposito, B [1 ]
Buratti, P
Cirant, S
Leigheb, M
Bracco, G
Carraro, L
Cocilovo, V
Gabellieri, L
Gandini, F
Giovannozzi, E
Gormezano, C
Jacchia, A
Lazzaro, E
De Luca, F
Marinucci, M
Minardi, E
Nowak, S
Pacella, D
Panaccione, L
Romanelli, M
Sozzi, C
Tudisco, O
机构
[1] EURATOM, ENEA Fus, CR Frascati, Rome, Italy
[2] EURATOM, ENEA, CNR Fus, Ist Fis Plasma, Milan, Italy
[3] EURATOM, ENEA, CNR Fus, Consorzio RFX,Corso Stati Uniti 4, I-35100 Padua, Italy
关键词
tokamak transport; tokamak scaling laws; Frascati Tokamak Upgrade;
D O I
10.13182/FST04-A520
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
Transport studies are presented in this chapter. Global scaling studies have been performed using several transport codes. Ohmic plasmas are found to follow the ITER97 L-mode scaling. Transport coefficients are discussed for improved confinement scenarios achieved in the Frascati Tokamak Upgrade (FTU): the repetitive pellet enhanced plasma mode, showing neoclassical confinement with H-factors up to 1.6, and the electron internal transport barriers (ITBs) with large transport barriers and H-factors up to 1.3. Heat transport models have been tested using electron cyclotron resonance heating (ECRH), steady or modulated, as a probe. The electron temperature stiffness observed in the main bulk of steady FTU plasmas can be interpreted both with a critical gradient transport model and with a model based on the existence of canonical profiles. ECRH has also been used to benefit from the improved confinement generally associated with low or negative magnetic shear, and large electron temperatures have been achieved in these conditions. Profile resiliency is observed so that heat transport is not consistent with a constant thermal diffusivity. Experimental optimization is discussed together with the analysis of transport coefficients. Thorough discussions of impurity transport are given, both for intrinsic and injected (from laser blow-off) impurities. Code simulation and experimental data are compared for a series of FTU experiments focusing on the improved confinement modes (pellets and ITBs). A moderate inward pinch velocity is generally required to reproduce the data.
引用
收藏
页码:370 / 386
页数:17
相关论文
共 45 条
[1]  
ALLLADIO F, 1998, P 17 FUS EN C YOK JA
[2]   Experiments in FTU with different limiter materials [J].
Apicella, ML ;
Apruzzese, G ;
Borra, M ;
Bracco, G ;
Ciotti, M ;
Condrea, I ;
Crisanti, F ;
DeAngelis, R ;
Ferro, C ;
Gabellieri, L ;
Gatti, G ;
Kroegler, H ;
Leigheb, M ;
Maddaluno, G ;
Maruccia, G ;
Mazzitelli, G ;
Pacella, D ;
PericoliRidolfini, V ;
Pieroni, L ;
Zagorski, R ;
Alladio, F ;
Bartiromo, R ;
Buceti, G ;
Buratti, P ;
Centioli, C ;
Cocilovo, V ;
Esposito, B ;
Frattolillo, A ;
Giovannozzi, E ;
Grolli, M ;
Imparato, A ;
Lovisetto, L ;
Micozzi, P ;
Migliori, S ;
Moleti, A ;
Orsitto, F ;
Panaccione, L ;
Pannella, M ;
Podda, S ;
Righetti, GB ;
Sternini, E ;
Tuccillo, AA ;
Tudisco, O ;
Valente, F ;
Vitale, V ;
Zanino, R ;
Zanza, V ;
Zerbini, M .
NUCLEAR FUSION, 1997, 37 (03) :381-396
[3]  
Biscamp D., 1986, COMMENTS PLASMA PHYS, V10, P165
[4]  
BLACKWELL B, 1982, 9TH P INT C PLASM PH, V2, P27
[5]  
BRACCO G, 2003, COMMUNICATION
[6]   A FOURIER-TRANSFORM SPECTROMETER WITH FAST SCANNING CAPABILITY FOR TOKAMAK PLASMA DIAGNOSTIC [J].
BURATTI, P ;
ZERBINI, M .
REVIEW OF SCIENTIFIC INSTRUMENTS, 1995, 66 (08) :4208-4217
[7]   MHD activity in FTU plasmas with reversed magnetic shear [J].
Buratti, P ;
Alladio, F ;
Micozzi, P ;
Tudisco, O ;
Acitelli, L ;
Angelini, B ;
Apicella, ML ;
Apruzzese, G ;
Barbato, E ;
Bertocchi, A ;
Bracco, G ;
Bruschi, A ;
Buceti, G ;
Cardinali, A ;
Centioli, C ;
Cesario, R ;
Ciattaglia, S ;
Ciotti, M ;
Cirant, S ;
Cocilovo, V ;
Crisanti, F ;
De Angelis, R ;
De Marco, F ;
Esposito, B ;
Frigione, D ;
Gabellieri, L ;
Gatti, G ;
Giovannozzi, E ;
Gourlan, C ;
Granucci, G ;
Grolli, M ;
Imparato, A ;
Kroegler, H ;
Leigheb, M ;
Lovisetto, L ;
Maddaluno, G ;
Maffia, G ;
Mancuso, A ;
Marinucci, M ;
Mazzitelli, G ;
Mirizzi, F ;
Orsitto, FP ;
Pacella, D ;
Panaccione, L ;
Panella, M ;
Ridolfini, VP ;
Pieroni, L ;
Podda, S ;
Righetti, GB ;
Romanelli, F .
PLASMA PHYSICS AND CONTROLLED FUSION, 1997, 39 :B383-B394
[8]   High core electron confinement regimes in FTU plasmas with low- or reversed-magnetic shear and high power density electron-cyclotron-resonance heating [J].
Buratti, P ;
Barbato, E ;
Bracco, G ;
Cirant, S ;
Crisanti, F ;
Granucci, G ;
Tuccillo, AA ;
Zanza, V ;
Zerbini, M ;
Acitelli, L ;
Alladio, F ;
Angelini, B ;
Apicella, ML ;
Apruzzese, G ;
Bertalot, L ;
Bertocchi, A ;
Borra, M ;
Bruschi, A ;
Buceti, G ;
Cardinali, A ;
Centioli, C ;
Cesario, R ;
Cianfarani, C ;
Ciattaglia, S ;
Cocilovo, V ;
De Angelis, R ;
De Marco, F ;
Esposito, B ;
Frigione, D ;
Gabellieri, L ;
Gatti, G ;
Giovannozzi, E ;
Gourlan, C ;
Grolli, M ;
Imparato, A ;
Kroegler, H ;
Leigheb, M ;
Lovisetto, L ;
Maddaluno, G ;
Maffia, G ;
Marinucci, M ;
Mazzitelli, G ;
Micozzi, P ;
Mirizzi, F ;
Nowak, S ;
Orsitto, FP ;
Pacella, D ;
Panaccione, L ;
Panella, M ;
Ridolfini, VP .
PHYSICAL REVIEW LETTERS, 1999, 82 (03) :560-563
[9]  
CARRARO L, 2002, P 29 C CONTR FUS PLA
[10]  
Cenacchi G., 1988, JETTO FREE BOUNDARY