Effect of magnetic perturbations on the 3D MHD self-organization of shaped tokamak plasmas
arXiv:1603.03572
Abstract
The effect of magnetic perturbations (MPs) on the helical self-organization of shaped tokamak plasmas is discussed in the framework of the nonlinear 3D MHD model. Numerical simulations performed in toroidal geometry with the \textsc{pixie3d} code [L. Chacón, Phys. Plasmas {\bf 15}, 056103 (2008)] show that MPs significantly affect the spontaneous quasi-periodic sawtoothing activity of such plasmas. In particular, the mitigation of sawtooth oscillations is induced by and MPs. These numerical findings provide a confirmation of previous circular tokamak simulations, and are in agreement with tokamak experiments in the RFX-mod and DIII-D devices. Sawtooth mitigation via MPs has also been observed in reversed-field pinch simulations and experiments. The effect of MPs on the stochastization of the edge magnetic field is also discussed.
Proceeding paper of the 7th IAEA Technical Meeting on 'Theory of Plasmas Instabilities', Frascati (Italy), March 4-6, 2015. This manuscript will be published on the conference website http://www.iaeatm-inst2015.enea.it/