Energy transport analysis of NSTX plasmas with the TGLF turbulent and NEO neoclassical transport models
被引:4
|
作者:
Avdeeva, G.
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机构:
Oak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Gen Atomics, POB 85608, San Diego, CA 05608 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Avdeeva, G.
[1
,2
]
Thome, K. E.
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机构:
Gen Atomics, POB 85608, San Diego, CA 05608 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Thome, K. E.
[2
]
Smith, S. P.
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机构:
Gen Atomics, POB 85608, San Diego, CA 05608 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Smith, S. P.
[2
]
Battaglia, D. J.
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机构:
Commonwealth Fus Syst, 117 Hosp Rd, Devens, MA 01434 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Battaglia, D. J.
[3
]
Clauser, C. F.
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机构:
Lehigh Univ, 19 Mem Dr, Bethlehem, PA 18015 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Clauser, C. F.
[4
]
Guttenfelder, W.
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机构:
Princeton Plasma Phys Lab, 100 Stellarator Rd, Princeton, NJ 08540 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Guttenfelder, W.
[5
]
Kaye, S. M.
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机构:
Princeton Plasma Phys Lab, 100 Stellarator Rd, Princeton, NJ 08540 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Kaye, S. M.
[5
]
Mcclenaghan, J.
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Gen Atomics, POB 85608, San Diego, CA 05608 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Mcclenaghan, J.
[2
]
Meneghini, O.
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机构:
Gen Atomics, POB 85608, San Diego, CA 05608 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Meneghini, O.
[2
]
Odstrcil, T.
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机构:
Gen Atomics, POB 85608, San Diego, CA 05608 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Odstrcil, T.
[2
]
Staebler, G.
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机构:
Gen Atomics, POB 85608, San Diego, CA 05608 USAOak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
Staebler, G.
[2
]
机构:
[1] Oak Ridge Associated Univ, POB 117, Oak Ridge, TN 37831 USA
[2] Gen Atomics, POB 85608, San Diego, CA 05608 USA
[3] Commonwealth Fus Syst, 117 Hosp Rd, Devens, MA 01434 USA
[4] Lehigh Univ, 19 Mem Dr, Bethlehem, PA 18015 USA
NSTX;
TGLF;
NEO;
energy transport analysis;
electrostatic drift-wave instabilities;
BETA;
D O I:
10.1088/1741-4326/acfc56
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:
This work presents a study of plasma transport at low aspect ratio on the National Spherical Torus Experiment tokamak, where the turbulent and neoclassical energy fluxes calculated by the quasilinear Trapped Gyro Landau Fluid (TGLF) model and the multi species drift-kinetic Neoclassical solver (NEO) are validated against experimental data. The turbulent energy transport of two plasma discharges, one in the L-mode confinement regime and another in the H-mode regime, is dominated by electrostatic drift-wave instabilities, while the ion heat transport has a significant neoclassical contribution. The data analysis workflow is described in detail to understand how the variations of mapping and fitting of experimental data affect the power balance solution and subsequent flux-matching plasma profile predictions with the TGYRO solver. On average, the predicted plasma profiles are consistent with experimental data. However, the solutions are sensitive to various input parameters, including boundary conditions, and the electron-ion coupling. Linear gyrokinetic stability analysis demonstrates close agreement of the real frequencies of unstable modes between TGLF and CGYRO gyrokinetic simulations, but higher growth rates are predicted by TGLF, especially for the H-mode case. Estimates of the low-k modes' contributions to the total flux are consistent with linear stability analysis and the E x B suppression of turbulence in TGLF simulations with the SAT1 saturation model, while the SAT2 saturation model over-predicts the low-k modes' contribution in the H-mode case. Moreover, the results with SAT1 model are consistent with power balance analysis, which indicates only neoclassical ion energy fluxes inside rho < 0.4 in the L-mode case and rho <= 0.7 in the H-mode case. The presence of multi-scale turbulence and ion-scale driven zonal flow mixing effects are also observed in TGLF scans of the electron turbulent heat flux over a range of temperature gradients and the electron-ion temperature ratio, which could explain the strong model sensitivity to variations of input parameters.
机构:
Chalmers Univ Technol, Dept Radio & Space Sci, SE-41296 Gothenburg, SwedenChalmers Univ Technol, Dept Radio & Space Sci, SE-41296 Gothenburg, Sweden
Fulop, T.
Nordman, H.
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机构:Chalmers Univ Technol, Dept Radio & Space Sci, SE-41296 Gothenburg, Sweden