The ballistic jump of the total heat flux after ECRH switching on in the T-10 tokamak

被引:29
作者
Andreev, VF [1 ]
Dnestrovskij, YN [1 ]
Ossipenko, MV [1 ]
Razumova, KA [1 ]
Sushkov, AV [1 ]
机构
[1] Russian Res Ctr, Kurchatov Inst, Moscow 123182, Russia
关键词
D O I
10.1088/0741-3335/46/2/001
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
Analysis of experiments with electron cyclotron resonance heating (ECRH),requires a good knowledge of the ECRH power profile. This profile is reconstructed by analysis of the transient process after on-axis ECRH switching on in special experiments with suppressed sawtooth oscillations in the T-10 tokamak. The calculations show that the absorbed ECRH power, P-EC(T), determined by the chan e in time derivative of the electron temperature at the region of ECRH power input, and the absorbed ECRH power, P-EC(beta), determined by the magnetic measurements, are several times different. Depending on the plasma density and plasma current, their relation, gamma(EC) = P-EC(T)/P-EC(beta), changes from 0.2 to 0.4. Analysis of different explanations for this effect shows that adequate description of the transient process demands introduction of a ballistic jump in the total heat flux just after on-axis ECRH switching on. The effective heat diffusivity increases up to values of 10-15m(2) S-1 in the first 100-200 mus and decreases down to values of 1.5-2.0 m(2) s(-1) during the following 1-2 ms. Note that such a non-monotone dependence of the effective heat diffusivity cannot be described by the modem critical gradient models. It seems that plasma reacts directly to the deposited power but not to the corresponding consequences (the increase in temperature or gradients). Different physical mechanisms could be proposed for this process (partial destruction of magnetic surfaces, fast transition of information through the turbulent cell connections), but each of them needs further confirmation.
引用
收藏
页码:319 / 335
页数:17
相关论文
共 37 条
[1]  
AKATOVA TY, 1987, P 14 EPS C CONTR D 3, V11, P855
[2]   ELECTRON-CYCLOTRON CURRENT DRIVE EXPERIMENTS ON T-10 [J].
ALIKAEV, VV ;
BAGDASAROV, AA ;
BORSHEGOVSKIJ, AA ;
DREMIN, MM ;
GORELOV, YA ;
ESIPCHUK, YV ;
KISLOV, AY ;
KISLOV, DA ;
LYSENKO, SE ;
NOTKIN, GE ;
PARAIL, VV ;
RAZUMOVA, KA ;
ROJ, IN ;
TRUKHIN, VM ;
VASIN, NL ;
DENISOV, GG ;
PETELIN, MI ;
FLYAGIN, VA ;
LOHR, JM ;
HARVEY, RW ;
JAMES, RA .
NUCLEAR FUSION, 1992, 32 (10) :1811-1821
[3]  
ALIKAEV VV, 1987, SOV J PLASMA PHYS, V14, P1027
[4]  
Andrä R, 2001, IMECHE CONF TRANS, V2001, P25
[5]   RECONSTRUCTION OF TRANSPORT-COEFFICIENTS FROM TOKAMAK EXPERIMENTAL-DATA [J].
ANDREEV, VF ;
DNESTROVSKIJ, YN ;
POPOV, AM .
NUCLEAR FUSION, 1993, 33 (03) :499-504
[6]   Jump in transport coefficients in discharges with ECR heating in the T-10 tokamak [J].
Andreev, VF ;
Dnestrovskij, YN ;
Razumova, KA ;
Sushkov, AV .
PLASMA PHYSICS REPORTS, 2002, 28 (05) :367-381
[7]  
ANDREEV VF, 1997, P 24 EPS C CONTR A 2, V21, P937
[8]  
ASHRAF M, 1989, PLASMA PHYS CONTROLL, V1, P541
[9]   A POSSIBLE MEASURE OF THE ENERGY DEPOSITION PROFILE IN ADDITIONAL PLASMA-HEATING EXPERIMENTS [J].
BARBATO, E ;
GIANNELLA, R .
PHYSICS LETTERS A, 1985, 110 (06) :309-312
[10]   MIRROR SYNTHESIS FOR GYROTRON QUASI-OPTICAL MODE CONVERTERS [J].
BOGDASHOV, AA ;
CHIRKOV, AV ;
DENISOV, GG ;
VINOGRADOV, DV ;
KUFTIN, AN ;
MALYGIN, VI ;
ZAPEVALOV, VE .
INTERNATIONAL JOURNAL OF INFRARED AND MILLIMETER WAVES, 1995, 16 (04) :735-744