Effect of the tangential NBI current drive on the stability of pressure and energetic particle driven MHD modes in LHD plasma
arXiv:2002.11346 · doi:10.1088/1741-4326/ab60cf
Abstract
The aim of the present study is to analyze the stability of the pressure gradient driven modes (PM) and Alfven eigenmodes (AE) in the Large Helical Device (LHD) plasma if the rotational transform profile is modified by the current drive of the tangential neutral beam injectors (NBI). This study forms a basic search for optimized operation scenarios with reduced mode activity. The analysis is performed using the code FAR3d which solves the reduced MHD equations describing the linear evolution of the poloidal flux and the toroidal component of the vorticity in a full 3D system, coupled with equations for density and parallel velocity moments of the energetic particle (EP) species, including the effect of the acoustic modes. The Landau damping and resonant destabilization effects are added via the closure relation. On-axis and off-axis NBI current drive modifies the rotational transform which becomes strongly distorted as the intensity of the neutral beam current drive (NBCD) increases, leading to wider continuum gaps and modifying the magnetic shear. The simulations with on-axis NBI injection show that a counter (ctr-) NBCD in inward shifted and default configurations leads to a lower growth rate of the PM, although strong n=1 and 2 AEs can be destabilized. For the outward shifted configurations, a co-NBCD improves the AEs stability but the PM are further destabilized if the co-NBCD intensity is 30 kA/T. If the NBI injection is off-axis, the plasma stability is not significantly improved due to the further destabilization of the AE and energetic particle modes (EPM) in the middle and outer plasma region.
References in corpus (2)
Cited by in corpus (6)
- Study of the Alfven Eigenmodes stability in CFQS plasma using a Landau closure model
- Simulation of the TAEs saturation phase in Large Helical Device device: MHD burst
- Effect of the neutral beam injector operational regime on the Alfven eigenmode saturation phase in DIII-D plasma
- Theoretical study of the Alfven Eigenmode stability in CFETR steady state discharges
- Analysis of the ECH effect on the EPM/AEs stability in Heliotron J plasma using a Landau closure model
- Theoretical analysis of the saturation phase of the energetic-ion-driven resistive interchange mode