Zonally dominated dynamics and Dimits threshold in curvature-driven ITG turbulence
Resource type
            
        Authors/contributors
                    - Ivanov, Plamen G. (Author)
 - Schekochihin, A. A. (Author)
 - Dorland, W. (Author)
 - Field, A. R. (Author)
 - Parra, F. I. (Author)
 
Title
            Zonally dominated dynamics and Dimits threshold in curvature-driven ITG turbulence
        Abstract
            The saturated state of turbulence driven by the ion-temperature-gradient instability is investigated using a two-dimensional long-wavelength fluid model that describes the perturbed electrostatic potential and perturbed ion temperature in a magnetic field with constant curvature (a ZZZ-pinch) and an equilibrium temperature gradient. Numerical simulations reveal a well-defined transition between a finite-amplitude saturated state dominated by strong zonal-flow and zonal temperature perturbations, and a blow-up state that fails to saturate on a box-independent scale. We argue that this transition is equivalent to the Dimits transition from a low-transport to a high-transport state seen in gyrokinetic numerical simulations (Dimits et al., Phys. Plasmas, vol. 7, 2000, 969). A quasi-static staircase-like structure of the temperature gradient intertwined with zonal flows, which have patch-wise constant shear, emerges near the Dimits threshold. The turbulent heat flux in the low-collisionality near-marginal state is dominated by turbulent bursts, triggered by coherent long-lived structures closely resembling those found in gyrokinetic simulations with imposed equilibrium flow shear (van Wyk et al., J. Plasma Phys., vol. 82, 2016, 905820609). The breakup of the low-transport Dimits regime is linked to a competition between the two different sources of poloidal momentum in the system – the Reynolds stress and the advection of the diamagnetic flow by the E×BE×B\boldsymbol {E}\times \boldsymbol {B} flow. By analysing the linear ion-temperature-gradient modes, we obtain a semi-analytic model for the Dimits threshold at large collisionality.
        Publication
            Journal of Plasma Physics
        Volume
            86
        Issue
            5
        Pages
            855860502
        Date
            2020/10
        Language
            en
        ISSN
            0022-3778, 1469-7807
        Accessed
            8/29/24, 10:29 AM
        Library Catalog
            Cambridge University Press
        Extra
            26 citations (Crossref/DOI) [2024-10-03]
26 citations (Crossref/DOI) [2024-10-02]
        Citation
            Ivanov, P. G., Schekochihin, A. A., Dorland, W., Field, A. R., & Parra, F. I. (2020). Zonally dominated dynamics and Dimits threshold in curvature-driven ITG turbulence. Journal of Plasma Physics, 86(5), 855860502. https://doi.org/10.1017/S0022377820000938
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