Publication | Open Access
Gyro-kinetic simulation of global turbulent transport properties in tokamak experiments
151
Citations
51
References
2006
Year
AeroacousticsEngineeringFluid MechanicsTurbulenceParticle SimulationPlasma PhysicsScalar TransportGyro-kinetic SimulationMagnetic Confinement FusionShaped Tokamak PlasmaPlasma SimulationNumerical SimulationMagnetohydrodynamicsTransport PhenomenaPlasma TurbulencePhysicsApplied Plasma PhysicPlasma InstabilityMultiphase FlowAerospace EngineeringTurbulence ModelingTokamak Experiments
A general geometry gyro-kinetic model for particle simulation of plasma turbulence in tokamak experiments is described. It incorporates the comprehensive influence of noncircular cross section, realistic plasma profiles, plasma rotation, neoclassical (equilibrium) electric fields, and Coulomb collisions. An interesting result of global turbulence development in a shaped tokamak plasma is presented with regard to nonlinear turbulence spreading into the linearly stable region. The mutual interaction between turbulence and zonal flows in collisionless plasmas is studied with a focus on identifying possible nonlinear saturation mechanisms for zonal flows. A bursting temporal behavior with a period longer than the geodesic acoustic oscillation period is observed even in a collisionless system. Our simulation results suggest that the zonal flows can drive turbulence. However, this process is too weak to be an effective zonal flow saturation mechanism.
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