Evidence for regions of nearly suppressed velocity space diffusion caused by finite Larmor radius effects during ICRF heating

被引:20
作者
Mantsinen, MJ [1 ]
Eriksson, LG
Gondhalekar, A
Hellsten, T
机构
[1] JET Joint Undertaking, Abingdon OX14 3EA, Oxon, England
[2] Helsinki Univ Technol, Assoc Euratom Tekes, FIN-02150 Espoo, Finland
关键词
D O I
10.1088/0029-5515/39/4/303
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
During high power ICRF beating, the distribution function of the resonating ions becomes non-Maxwellian and an anisotropic tail develops mainly in the perpendicular velocity direction. The evolution of the distribution function can be described by a quasi-linear diffusion operator in phase space. Owing to finite Larmor radius (FLR) effects: the diffusion coefficient in this operator varies with the gyro-radius normalized to the wavelength. At certain ion energies the diffusion coefficient can become strongly reduced, effectively preventing resonating ions from reaching higher energies. Measurements are reported which show a significant difference in the distribution function between different scenarios for heating of hydrogen ions in JET. Comparison with theoretical calculations shows that these differences can be explained by higher order FLR effects on velocity space diffusion during ICRF heating. The importance of these effects on the power deposition is also emphasized.
引用
收藏
页码:459 / 466
页数:8
相关论文
共 19 条
[11]   Impurity induced neutralization of megaelectronvolt energy protons in jet plasmas [J].
Korotkov, AA ;
Gondhalekar, A ;
Stuart, AJ .
NUCLEAR FUSION, 1997, 37 (01) :35-51
[12]   Interpretation of measurements of ICRF heated minority proton distributions in jet [J].
McClements, KG ;
Dendy, RO ;
Gondhalekar, A .
NUCLEAR FUSION, 1997, 37 (04) :473-480
[13]   ION-CYCLOTRON RANGE OF FREQUENCIES HEATING AND CURRENT DRIVE IN DEUTERIUM-TRITIUM PLASMAS [J].
PHILLIPS, CK ;
BELL, MG ;
BELL, R ;
BRETZ, N ;
BUDNY, RV ;
DARROW, DS ;
GREK, B ;
HAMMETT, G ;
HOSEA, JC ;
HSUAN, H ;
IGNAT, D ;
MAJESKI, R ;
MAZZUCATO, E ;
NAZIKIAN, R ;
PARK, H ;
ROGERS, JH ;
SCHILLING, G ;
STEVENS, JE ;
SYNAKOWSKI, E ;
TAYLOR, G ;
WILSON, JR ;
ZARNSTORFF, MC ;
ZWEBEN, SJ ;
BUSH, CE ;
GOLDFINGER, R ;
JAEGER, EF ;
MURAKAMI, M ;
RASMUSSEN, D ;
BETTENHAUSEN, M ;
LAM, NT ;
SCHARER, J ;
SUND, R ;
SAUTER, O .
PHYSICS OF PLASMAS, 1995, 2 (06) :2427-2434
[14]  
RINGSTROM H, 1996, ALF1996101 ROYAL I T
[15]   D-T fusion with ion cyclotron resonance heating in the JET tokamak [J].
Start, DFH ;
Jacquinot, J ;
Bergeaud, V ;
Bhatnagar, VP ;
Cottrell, GA ;
Clement, S ;
Eriksson, LG ;
Fasoli, A ;
Gondhalekar, A ;
Gormezano, C ;
Grosshoeg, G ;
Guenther, K ;
Harbour, P ;
Horton, LD ;
Howman, A ;
Jackel, H ;
Jarvis, ON ;
Lawson, KD ;
Lowry, C ;
Mantsinen, M ;
Marcus, FB ;
Monk, R ;
Righi, E ;
Rimini, FG ;
Sadler, GJ ;
Saibene, GR ;
Sartori, R ;
Schunke, B ;
Sharapov, S ;
Sips, ACC ;
Stamp, M ;
van Belle, P .
PHYSICAL REVIEW LETTERS, 1998, 80 (21) :4681-4684
[16]   FAST-WAVE HEATING OF A 2-COMPONENT PLASMA [J].
STIX, TH .
NUCLEAR FUSION, 1975, 15 (05) :737-754
[17]  
STIX TH, 1985, APPL RF WAVES TOKAMA, V1, P24
[18]   SELF-CONSISTENT MODELING OF ION-CYCLOTRON RESONANCE HEATING [J].
VANEESTER, D .
PLASMA PHYSICS AND CONTROLLED FUSION, 1994, 36 (08) :1327-1354
[19]   ION-CYCLOTRON RANGE OF FREQUENCY HEATING OF A DEUTERIUM-TRITIUM PLASMA VIA THE 2ND-HARMONIC TRITIUM CYCLOTRON-RESONANCE [J].
WILSON, JR ;
BUSH, CE ;
DARROW, D ;
HOSEA, JC ;
JAEGER, EF ;
MAJESKI, R ;
MURAKAMI, M ;
PHILLIPS, CK ;
ROGERS, JH ;
SCHILLING, G ;
STEVENS, JE ;
SYNAKOWSKI, E ;
TAYLOR, G .
PHYSICAL REVIEW LETTERS, 1995, 75 (05) :842-845