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Comprehensive comparisons of geodesic acoustic mode characteristics and dynamics between Tore Supra experiments and gyrokinetic simulations
被引:23
|作者:
Storelli, A.
[1
]
Vermare, L.
[1
]
Hennequin, P.
[1
]
Guercan, Oe. D.
[1
]
Dif-Pradalier, G.
[2
]
Sarazin, Y.
[2
]
Garbet, X.
[2
]
Goerler, T.
[3
]
Singh, Rameswar
[1
]
Morel, P.
[1
]
Grandgirard, V.
[2
]
Ghendrih, P.
[2
]
机构:
[1] UPSud, UPMC, CNRS, Ecole Polytech,Lab Phys Plasmas, F-91128 Palaiseau, France
[2] CEA, IRFM, F-13108 St Paul Les Durance, France
[3] Max Planck Inst Plasma Phys, D-85748 Garching, Germany
基金:
欧盟地平线“2020”;
关键词:
ZONAL FLOWS;
DENSITY-FLUCTUATIONS;
COHERENT;
PLASMA;
OSCILLATIONS;
EXCITATION;
DRIVEN;
WAVES;
RANGE;
D O I:
10.1063/1.4922845
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:
In a dedicated collisionality scan in Tore Supra, the geodesic acoustic mode (GAM) is detected and identified with the Doppler backscattering technique. Observations are compared to the results of a simulation with the gyrokinetic code GYSELA. We found that the GAM frequency in experiments is lower than predicted by simulation and theory. Moreover, the disagreement is higher in the low collisionality scenario. Bursts of non harmonic GAM oscillations have been characterized with filtering techniques, such as the Hilbert-Huang transform. When comparing this dynamical behaviour between experiments and simulation, the probability density function of GAM amplitude and the burst autocorrelation time are found to be remarkably similar. In the simulation, where the radial profile of GAM frequency is continuous, we observed a phenomenon of radial phase mixing of the GAM oscillations, which could influence the burst autocorrelation time. (C) 2015 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution 3.0 Unported License.
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