Back to Search Start Over

Impact of fast ions on density peaking in JET : fluid and gyrokinetic modeling

Authors :
Eriksson, F.
Bergsåker, Henric
Bykov, Igor
Frassinetti, Lorenzo
Garcia Carrasco, Alvaro
Hellsten, Torbjörn
Johnson, Thomas
Menmuir, Sheena
Petersson, Per
Rachlew, Elisabeth
Ratynskaia, Svetlana
Rubel, Marek
Stefániková, Estera
Ström, Petter
Tholerus, Emmi
Tolias, Panagiotis
Olivares, Pablo Vallejos
Weckmann, Armin
Zhou, Y
Zychor, I.
et al
Eriksson, F.
Bergsåker, Henric
Bykov, Igor
Frassinetti, Lorenzo
Garcia Carrasco, Alvaro
Hellsten, Torbjörn
Johnson, Thomas
Menmuir, Sheena
Petersson, Per
Rachlew, Elisabeth
Ratynskaia, Svetlana
Rubel, Marek
Stefániková, Estera
Ström, Petter
Tholerus, Emmi
Tolias, Panagiotis
Olivares, Pablo Vallejos
Weckmann, Armin
Zhou, Y
Zychor, I.
et al
Publication Year :
2019

Abstract

The effect of fast ions on turbulent particle transport, driven by ion temperature gradient (ITG)/trapped electron mode turbulence, is studied. Two neutral beam injection (NBI) heated JET discharges in different regimes are analyzed at the radial position rho(t) = 0.6, one of them an L-mode and the other one an H-mode discharge. Results obtained from the computationally efficient fluid model EDWM and the gyro-fluid model TGLF are compared to linear and nonlinear gyrokinetic GENE simulations as well as the experimentally obtained density peaking. In these models, the fast ions are treated as a dynamic species with a Maxwellian background distribution. The dependence of the zero particle flux density gradient (peaking factor) on fast ion density, temperature and corresponding gradients, is investigated. The simulations show that the inclusion of a fast ion species has a stabilizing influence on the ITG mode and reduces the peaking of the main ion and electron density profiles in the absence of sources. The models mostly reproduce the experimentally obtained density peaking for the L-mode discharge whereas the H-mode density peaking is significantly underpredicted, indicating the importance of the NBI particle source for the H-mode density profile.<br />QC 20200313

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235038697
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1088.1361-6587.ab1e65