August 2016

Journal

A fully non-linear multi-species Fokker–Planck–Landau collision operator for simulation of fusion plasma

By:
Hager, Robert; Yoon, Eisung; Ku, Seung-Hoe; D'azevedo, Eduardo F; Worley, Patrick H; Chang, C.
Journal Name:
Journal of Computational Physics
Page Number:
644-660
Volume:
315
Issue Number:
N/A
Publication Date:
August 12, 2016
View DOI Listing:
https://doi.org/10.1016/j.jcp.2016.03.064

Abstract

Fusion edge plasmas can be far from thermal equilibrium and require the use of a non-linear collision operator for accurate numerical simulations. In this article, the non- linear single-species Fokker–Planck–Landau collision operator developed by Yoon and Chang (2014) [9] is generalized to include multiple particle species. The finite volume discretization used in this work naturally yields exact conservation of mass, momentum, and energy. The implementation of this new non-linear Fokker–Planck–Landau operator in the gyrokinetic particle-in-cell codes XGC1 and XGCa is described and results of a verification study are discussed. Finally, the numerical techniques that make our non-linear collision operator viable on high-performance computing systems are described, including specialized load balancing algorithms and nested OpenMP parallelization. The collision operator’s good weak and strong scaling behavior are shown.