Strong gradient effects on neoclassical electron transport and the bootstrap current in large aspect ratio tokamaks
Abstract:
Standard approaches to neoclassical theory do not extend into regions of strong gradients in tokamaks such as the pedestal and internal transport barriers. Here, we calculate the modifications to neoclassical electron physics inside strong gradient regions of large aspect ratio tokamaks in the banana regime. We show that these modifications are due to the different ion flow and the strong poloidal variation of the potential. We also provide a physical interpretation of the mechanisms that drive poloidal asymmetries and hence a poloidal electric field. We apply our model to two specific example cases of pedestal profiles, calculating the neoclassical electron flux and the bootstrap current. We find that, depending on the ion flow, weak gradient neoclassical theory overestimates or underestimates the neoclassical electron transport and the bootstrap current in regions with strong gradients. We show that the determination of the mean parallel flow is more complex than in weak gradient neoclassical theory. For vanishing turbulence, we can determine the radial electric field for a given flow profile in the pedestal.Enhanced Collisional Losses from a Magnetic Mirror Using the Lenard-Bernstein Collision Operator
Beam focusing and consequences for Doppler backscattering measurements
Measurement of zero-frequency fluctuations generated by coupling between Alfv茅n modes in the JET Tokamak
Abstract:
We report the first experimental detection of a zero-frequency fluctuation that is pumped by an Alfv茅n mode in a magnetically confined plasma. Core-localized Alfv茅n modes of frequency inside the toroidicity-induced gap (and its harmonics) exhibit three-wave coupling interactions with a zero-frequency fluctuation. The observation of the zero-frequency fluctuation is consistent with theoretical and numerical predictions of zonal modes pumped by Alfv茅n modes, and is correlated with an increase in the deep core ion temperature, temperature gradient, confinement factor H89,P, and a reduction in the main ion heat diffusivity. Despite the energetic particle transport induced by the Alfv茅n eigenmodes, the generation of a zero-frequency fluctuation that can suppress the turbulence leads to an overall improvement of confinement.