Distinct turbulence saturation regimes in stellarators
Plasma Physics
2017-10-02 v2
Abstract
In the complex 3D magnetic fields of stellarators, ion-temperature-gradient turbulence is shown to have two distinct saturation regimes, as revealed by petascale numerical simulations, and explained by a simple turbulence theory. The first regime is marked by strong zonal flows, and matches previous observations in tokamaks. The newly observed second regime, in contrast, exhibits small- scale quasi-two-dimensional turbulence, negligible zonal flows, and, surprisingly, a weaker heat flux scaling. Our findings suggest that key details of the magnetic geometry control turbulence in stellarators.
Cite
@article{arxiv.1703.03257,
title = {Distinct turbulence saturation regimes in stellarators},
author = {G. G. Plunk and P. Xanthopoulos and P. Helander},
journal= {arXiv preprint arXiv:1703.03257},
year = {2017}
}
Comments
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