Turbulent and neoclassical impurity transport in tokamak plasmas

被引:30
作者
Fulop, T. [1 ]
Nordman, H.
机构
[1] Chalmers Univ Technol, Dept Radio & Space Sci, SE-41296 Gothenburg, Sweden
关键词
electrostatics; fusion reactor theory; plasma density; plasma impurities; plasma temperature; plasma theory; plasma toroidal confinement; plasma transport processes; plasma turbulence; Tokamak devices;
D O I
10.1063/1.3083299
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
Impurity particle transport in tokamaks is studied using an electrostatic fluid model for main ion and impurity temperature gradient (ITG) mode and trapped electron (TE) mode turbulence in the collisionless limit and neoclassical theory. The impurity flux and impurity density peaking factor obtained from a self-consistent treatment of impurity transport are compared and contrasted with the results of the often used trace impurity approximation. Comparisons between trace and self-consistent turbulent impurity transport are performed for ITER-like profiles. It is shown that for small impurity concentrations the trace impurity limit is adequate if the plasma is dominated by ITG turbulence. However, in case of TE mode dominated plasmas the contribution from impurity modes may be significant, and therefore a self-consistent treatment may be needed.
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页数:8
相关论文
共 22 条
[1]   Direction of impurity pinch and auxiliary heating in tokamak plasmas [J].
Angioni, C ;
Peeters, AG .
PHYSICAL REVIEW LETTERS, 2006, 96 (09)
[2]   Kinetic calculation of neoclassical transport including self-consistent electron and impurity dynamics [J].
Belli, E. A. ;
Candy, J. .
PLASMA PHYSICS AND CONTROLLED FUSION, 2008, 50 (09)
[3]   An Eulerian gyrokinetic-Maxwell solver [J].
Candy, J ;
Waltz, RE .
JOURNAL OF COMPUTATIONAL PHYSICS, 2003, 186 (02) :545-581
[4]  
CANDY J, 2008, P 22 INT AT EN AG FU
[5]   Fluid simulations of turbulent impurity transport [J].
Dubuit, N. ;
Garbet, X. ;
Parisot, T. ;
Guirlet, R. ;
Bourdelle, C. .
PHYSICS OF PLASMAS, 2007, 14 (04)
[6]   Influence of the heating profile on impurity transport in ASDEX Upgrade [J].
Dux, R ;
Neu, R ;
Peeters, AG ;
Pereverzev, G ;
Mück, A ;
Ryter, F ;
Stober, J .
PLASMA PHYSICS AND CONTROLLED FUSION, 2003, 45 (09) :1815-1825
[7]   Gyrokinetic simulations of ion and impurity transport [J].
Estrada-Mila, C ;
Candy, J ;
Waltz, RE .
PHYSICS OF PLASMAS, 2005, 12 (02) :022305-1
[8]   IMPURITY EFFECTS ON ETA-I MODE-STABILITY AND TRANSPORT [J].
FROJDH, M ;
LILJESTROM, M ;
NORDMAN, H .
NUCLEAR FUSION, 1992, 32 (03) :419-428
[9]   Impurity transport in ITER-like plasmas [J].
Fulop, T. ;
Weiland, J. .
PHYSICS OF PLASMAS, 2006, 13 (11)
[10]   Turbulent fluxes and entropy production rate [J].
Garbet, X ;
Dubuit, N ;
Asp, E ;
Sarazin, Y ;
Bourdelle, C ;
Ghendrih, P ;
Hoang, GT .
PHYSICS OF PLASMAS, 2005, 12 (08) :1-13