Publication | Open Access
Verification of gyrokinetic particle simulation of current-driven instability in fusion plasmas. II. Resistive tearing mode
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Citations
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References
2014
Year
EngineeringFluid MechanicsMechanical EngineeringResistive Tearing ModesPlasma PhysicsComputational MechanicsMagnetic Confinement FusionMechanicsPlasma SimulationNumerical SimulationMagnetohydrodynamicsGtc Linear SimulationsCurrent-driven InstabilityFusion PlasmasPhysicsGtc SimulationsPlasma InstabilityApplied PhysicsGyrokinetic Particle Simulation
Global gyrokinetic particle simulation of resistive tearing modes has been developed and verified in the gyrokinetic toroidal code (GTC). GTC linear simulations in the fluid limit of the kink-tearing and resistive tearing modes in the cylindrical geometry agree well with the resistive magnetohydrodynamic eigenvalue and initial value codes. Ion kinetic effects are found to reduce the radial width of the tearing modes. GTC simulations of the resistive tearing modes in the toroidal geometry find that the toroidicity reduces the growth rates.
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