Gyrokinetic modelling of electron and boron density profiles of H-mode plasmas in ASDEX Upgrade

被引:78
作者
Angioni, C. [1 ]
McDermott, R. M. [1 ]
Fable, E. [1 ]
Fischer, R. [1 ]
Puetterich, T. [1 ]
Ryter, F. [1 ]
Tardini, G. [1 ]
机构
[1] Max Planck Inst Plasma Phys, EURATOM Assoc, D-85748 Garching, Germany
关键词
PARTICLE-TRANSPORT; NEOCLASSICAL TRANSPORT; PEAKING; COLLISIONALITY; JET; DEPENDENCE; PINCH; SHEAR; CODE; TCV;
D O I
10.1088/0029-5515/51/2/023006
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
Local gyrokinetic calculations of the logarithmic gradients at mid-radius of both electron and boron densities in ASDEX Upgrade H-mode plasmas are presented and compared with the experimental observations. The experimental results show that both the electron and the boron density profiles increase their peaking in response to the addition of central electron cyclotron heating over a background of neutral beam injection (NBI) heating. The boron density profiles are always less peaked than the electron density profiles in the confinement region, and are flat or even slightly hollow in the presence of NBI heating only. The experimental behaviours are well reproduced by the theoretical predictions. The agreement allows the identification, through theoretical modelling, of the transport mechanisms responsible for the observed dependences. In particular, the observed increase in the logarithmic electron density gradient with increasing central electron heating is explained by a concurrent reduction of the outward pure convection and an increase in the inward thermodiffusion. In addition, it is found that the plasma toroidal rotation velocity and its radial gradient play a non-negligible role in the turbulent boron transport, and allow the prediction of a decrease in boron peaking with increasing rotation velocity, which is consistent with the experimental observations.
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页数:19
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共 64 条
[1]   Scaling of density peaking in H-mode plasmas based on a combined database of AUG and JET observations [J].
Angioni, C. ;
Weisen, H. ;
Kardaun, O. J. W. F. ;
Maslov, M. ;
Zabolotsky, A. ;
Fuchs, C. ;
Garzotti, L. ;
Giroud, C. ;
Kurzan, B. ;
Mantica, P. ;
Peeters, A. G. ;
Stober, J. .
NUCLEAR FUSION, 2007, 47 (09) :1326-1335
[2]   Direction of impurity pinch and auxiliary heating in tokamak plasmas [J].
Angioni, C ;
Peeters, AG .
PHYSICAL REVIEW LETTERS, 2006, 96 (09)
[3]   Relationship between density peaking, particle thermodiffusion, Ohmic confinement, and microinstabilities in ASDEX Upgrade L-mode plasmas -: art. no. 040701 [J].
Angioni, C ;
Peeters, AG ;
Ryter, F ;
Jenko, F ;
Conway, GD ;
Dannert, T ;
Fahrbach, HU ;
Reich, M ;
Suttrop, W ;
Fattorini, L .
PHYSICS OF PLASMAS, 2005, 12 (04) :1-4
[4]   Density response to central electron heating: theoretical investigations and experimental observations in ASDEX Upgrade [J].
Angioni, C ;
Peeters, AG ;
Garbet, X ;
Manini, A ;
Ryter, F .
NUCLEAR FUSION, 2004, 44 (08) :827-845
[5]   Density peaking, anomalous pinch, and collisionality in tokamak plasmas [J].
Angioni, C ;
Peeters, AG ;
Pereverzev, GV ;
Ryter, F ;
Tardini, G .
PHYSICAL REVIEW LETTERS, 2003, 90 (20) :4-205003
[6]   Theory-based modeling of particle transport in ASDEX Upgrade H-mode plasmas, density peaking, anomalous pinch and collisionality [J].
Angioni, C ;
Peeters, AG ;
Pereverzev, GV ;
Ryter, F ;
Tardini, G .
PHYSICS OF PLASMAS, 2003, 10 (08) :3225-3239
[7]   Neoclassical transport coefficients for general axisymmetric equilibria in the banana regime [J].
Angioni, C ;
Sauter, O .
PHYSICS OF PLASMAS, 2000, 7 (04) :1224-1234
[8]   Particle transport in tokamak plasmas, theory and experiment [J].
Angioni, C. ;
Fable, E. ;
Greenwald, M. ;
Maslov, M. ;
Peeters, A. G. ;
Takenaga, H. ;
Weisen, H. .
PLASMA PHYSICS AND CONTROLLED FUSION, 2009, 51 (12)
[9]   Particle pinch and collisionality in gyrokinetic simulations of tokamak plasma turbulence [J].
Angioni, C. ;
Candy, J. ;
Fable, E. ;
Maslov, M. ;
Peeters, A. G. ;
Waltz, R. E. ;
Weisen, H. .
PHYSICS OF PLASMAS, 2009, 16 (06)
[10]   Gyrokinetic simulations of impurity, He ash and α particle transport and consequences on ITER transport modelling [J].
Angioni, C. ;
Peeters, A. G. ;
Pereverzev, G. V. ;
Bottino, A. ;
Candy, J. ;
Dux, R. ;
Fable, E. ;
Hein, T. ;
Waltz, R. E. .
NUCLEAR FUSION, 2009, 49 (05)