Flux-driven turbulent transport using penalisation in the Hasegawa-Wakatani system

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Guillon, Pierre L., Gürcan, Özgür D., Dif-Pradalier, Guilhem, Sarazin, Yanick, Fedorczak, Nicolas
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866908606515904512
author Guillon, Pierre L.
Gürcan, Özgür D.
Dif-Pradalier, Guilhem
Sarazin, Yanick
Fedorczak, Nicolas
author_facet Guillon, Pierre L.
Gürcan, Özgür D.
Dif-Pradalier, Guilhem
Sarazin, Yanick
Fedorczak, Nicolas
contents First numerical results from the newly-developed pseudo-spectral code P-FLARE (Penalised FLux-driven Algorithm for REduced models) are presented. This flux-driven turbulence/transport code uses a pseudo-spectral formulation with the penalisation method in order to impose radial boundary conditions. Its concise, flexible structure allows implementing various quasi-two dimensional reduced fluid models in flux-driven formulation. Here, results from simulations of the modified Hasegawa-Wakatani system are discussed, where particle transport and zonal flow formation, together with profile relaxation, are studied. It is shown that coupled spreading/profile relaxation that one obtains for this system is consistent with a simple one dimensional model of coupled spreading/transport equations. Then, the effect of a particle source is investigated, which results in the observation of sandpile-like critical behaviour. The model displays profile stiffness for certain parameters, with very different input fluxes resulting in very similar mean density gradients. This is due to different zonal flow levels around the critical value for the control parameter (i.e. the ratio of the adiabaticity parameter to the mean gradient) and the existence for this system of a hysteresis loop for the transition from 2D turbulence to a zonal flow dominated state.
format Preprint
id arxiv_https___arxiv_org_abs_2506_18705
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Flux-driven turbulent transport using penalisation in the Hasegawa-Wakatani system
Guillon, Pierre L.
Gürcan, Özgür D.
Dif-Pradalier, Guilhem
Sarazin, Yanick
Fedorczak, Nicolas
Plasma Physics
Fluid Dynamics
First numerical results from the newly-developed pseudo-spectral code P-FLARE (Penalised FLux-driven Algorithm for REduced models) are presented. This flux-driven turbulence/transport code uses a pseudo-spectral formulation with the penalisation method in order to impose radial boundary conditions. Its concise, flexible structure allows implementing various quasi-two dimensional reduced fluid models in flux-driven formulation. Here, results from simulations of the modified Hasegawa-Wakatani system are discussed, where particle transport and zonal flow formation, together with profile relaxation, are studied. It is shown that coupled spreading/profile relaxation that one obtains for this system is consistent with a simple one dimensional model of coupled spreading/transport equations. Then, the effect of a particle source is investigated, which results in the observation of sandpile-like critical behaviour. The model displays profile stiffness for certain parameters, with very different input fluxes resulting in very similar mean density gradients. This is due to different zonal flow levels around the critical value for the control parameter (i.e. the ratio of the adiabaticity parameter to the mean gradient) and the existence for this system of a hysteresis loop for the transition from 2D turbulence to a zonal flow dominated state.
title Flux-driven turbulent transport using penalisation in the Hasegawa-Wakatani system
topic Plasma Physics
Fluid Dynamics
url https://arxiv.org/abs/2506.18705