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- W2766111301 abstract "The neoclassical toroidal viscosity (NTV) caused by a non-axisymmetric magnetic field perturbation is numerically studied using two global kinetic simulations with different numerical approaches. Both simulations reproduce similar collisionality (νb*) dependencies over wide νb* ranges. It is demonstrated that resonant structures in the velocity space predicted by the conventional superbanana-plateau theory exist in the small banana width limit, while the resonances diminish when the banana width becomes large. It is also found that fine scale structures are generated in the velocity space as νb* decreases in the large banana width simulations, leading to the νb*-dependency of the NTV. From the analyses of the particle orbit, it is found that the finite k∥ mode structure along the bounce motion appears owing to the finite orbit width, and it suffers from bounce phase mixing, suggesting the generation of the fine scale structures by the similar mechanism as the parallel phase mixing of passing particles." @default.
- W2766111301 created "2017-11-10" @default.
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- W2766111301 date "2017-10-01" @default.
- W2766111301 modified "2023-09-26" @default.
- W2766111301 title "Global kinetic simulations of neoclassical toroidal viscosity in low-collisional perturbed tokamak plasmas" @default.
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- W2766111301 doi "https://doi.org/10.1063/1.5008285" @default.
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