English

Benign saturation of ideal ballooning instability in a high-performance stellarator

Plasma Physics 2024-10-01 v2

Abstract

To examine the robustness of the designed 5% β\beta-limit for high-performance operation in the W7-X stellarator, we undertake nonlinear magnetohydrodynamic (MHD) simulations of pressure-driven instabilities using the M3D-C1C^1 code. Consistent with linear analyses, ideal ballooning instabilities occur as β\beta exceeds 5% in the standard configuration. Nonetheless, the modes saturate nonlinearly at relatively low levels without triggering large-scale crashes, even though confinement degradation worsens as β\beta increases. In contrast, in an alternative configuration with nearly zero magnetic shear, ideal interchange modes induce a pressure crash at β=1%\beta= 1\%. These results suggest that the standard W7-X configuration might have a soft β\beta-limit that is fairly immune to major MHD events, which enhances the appeal of the stellarator approach to steady-state fusion reactors.

Keywords

Cite

@article{arxiv.2404.01966,
  title  = {Benign saturation of ideal ballooning instability in a high-performance stellarator},
  author = {Yao Zhou and K. Aleynikova and Chang Liu and N. M. Ferraro},
  journal= {arXiv preprint arXiv:2404.01966},
  year   = {2024}
}

Comments

6 pages, 5 figures