English

Performance of the BGSDC integrator for computing fast ion trajectories in nuclear fusion reactors

Computational Physics 2021-03-18 v2 Numerical Analysis Numerical Analysis

Abstract

Modelling neutral beam injection (NBI) in fusion reactors requires computing the trajectories of large ensembles of particles. Slowing down times of up to one second combined with nanosecond time steps make these simulations computationally very costly. This paper explores the performance of BGSDC, a new numerical time stepping method, for tracking ions generated by NBI in the DIII-D and JET reactors. BGSDC is a high-order generalisation of the Boris method, combining it with spectral deferred corrections and the Generalized Minimal Residual method GMRES. Without collision modelling, where numerical drift can be quantified accurately, we find that BGSDC can deliver higher quality particle distributions than the standard Boris integrator at comparable cost or comparable distributions at lower cost. With collision models, quantifying accuracy is difficult but we show that BGSDC produces stable distributions at larger time steps than Boris.

Keywords

Cite

@article{arxiv.2005.07705,
  title  = {Performance of the BGSDC integrator for computing fast ion trajectories in nuclear fusion reactors},
  author = {Krasymyr Tretiak and James Buchanan and Rob Akers and Daniel Ruprecht},
  journal= {arXiv preprint arXiv:2005.07705},
  year   = {2021}
}

Comments

New version has multiple updates, clarifications in the text and new figures