Secondary instability of electromagnetic ion-temperature-gradient modes for zonal flow generation
Abstract
An analytical model for zonal flow generation by toroidal ion-temperature-gradient (ITG) modes, including finite electromagnetic effects, is derived. The derivation is based on a fluid model for ions and electrons and takes into account both linear and nonlinear effects. The influence of finite plasma on the zonal flow growth rate () scaling is investigated for typical tokamak plasma parameters. The results show the importance of the zonal flows close to marginal stability where is obtained. In this region the parameter increases with , indicating that the ITG turbulence and associated transport would decrease with at a faster rate than expected from a purely linear or quasi-linear analysis.
Cite
@article{arxiv.1104.1995,
title = {Secondary instability of electromagnetic ion-temperature-gradient modes for zonal flow generation},
author = {Johan Anderson and Hans Nordman and Rameswar Singh and Raghvendra Singh},
journal= {arXiv preprint arXiv:1104.1995},
year = {2015}
}
Comments
RevTex 17 pages, 4 figures, submitted to Physics of Plasmas