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Spatiotemporal Structures of Edge Limit-Cycle Oscillation before L-to-H Transition in the JFT-2M Tokamak
113
Citations
20
References
2013
Year
EngineeringFluid MechanicsEdge Limit-cycle OscillationTurbulencePlasma PhysicsJft-2m TokamakMagnetic Confinement FusionControlled Nuclear FusionMagnetohydrodynamicsTransport PhenomenaVortex DynamicPlasma TurbulenceDielectric ConstantPhysicsBasic Plasma PhysicPlasma InstabilityLimit-cycle OscillationTurbulence ModelingOscillatory Reynolds StressSpatiotemporal Structures
In this Letter, we report analyses of spatiotemporal dynamics of turbulence and structure in the limit-cycle oscillation (LCO) that precedes an L-to-H transition. Zonal flows are not observed during LCO, and the oscillation is the periodic generations or decays of barrier with edge-localized mean flow. Oscillatory Reynolds stress is found to be too small to accelerate the LCO flow, by considering the dielectric constant in magnetized toroidal plasmas. Propagation of changes of the density gradient and turbulence amplitude into the core is also observed.
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