English

Numerical study of transition between even and odd toroidal Alfv\'en eigenmodes on EAST

Plasma Physics 2019-05-07 v1

Abstract

Linear simulations of toriodal Alfv\'en eigenmodes (TAEs) driven by energetic particles (EPs) on EAST (Experimental Advanced Superconducting Tokamak) are performed using the hybrid-kinetic MHD (HK-MHD) model implemented in NIMROD code. The EAST equilibrium is reconstructed using the EFIT code based on experimental measurement. The "slowing down" distribution is adopted for modeling the equilibrium distribution of the energetic ions from the deuterium neutral beam injection on EAST. The frequency, the dominant poloidal mode number, the radial location and the detailed 2D mode structure of the TAE/RSAE/EPM modes are consistent between the eigenvalue analysis and the NIMROD simulation. As the β\beta fraction of EP increases, a transition between even and odd TAEs occurs, along with that between the ballooning and anti-ballooning mode structures. When the β\beta fraction of EP is close to the transition threshold, both types of TAEs coexist.

Keywords

Cite

@article{arxiv.1905.01801,
  title  = {Numerical study of transition between even and odd toroidal Alfv\'en eigenmodes on EAST},
  author = {Yawei Hou and Charlson C. Kim and Ping Zhu and Zhihui Zou and Youjun Hu and Xingting Yan and the NIMROD Team},
  journal= {arXiv preprint arXiv:1905.01801},
  year   = {2019}
}

Comments

20 pages, 13 figures