Transport modelling of Joint European Torus (JET) dimensionless collisionality scaling experiments in various operational scenarios is presented. Interpretative simulations at a fixed radial position are combined with predictive JETTO simulations of temperatures and densities, using the TGLF transport model. The model includes electromagnetic effects and collisions as well as (E)over-right-arrow x (b)over-right-arrow shear in Miller geometry. Focus is on particle transport and the role of the neutral beam injection (NBI) particle source for the density peaking. The experimental 3-point collisionality scans include L-mode, and H-mode (D and H and higher beta D plasma) plasmas in a total of 12 discharges. Experimental results presented in (Tala et al 2017 44th EPS Conf.) indicate that for the H-mode scans, the NBI particle source plays an important role for the density peaking, whereas for the L-mode scan, the influence of the particle source is small. In general, both the interpretative and predictive transport simulations support the experimental conclusions on the role of the NBI particle source for the 12 JET discharges.

Interpretative and predictive modelling of Joint European Torus collisionality scans

Alessi E;Bonfiglio D;Brombin M;Brunetti D;Carraro L;Causa F;Figini L;Gervasini G;Ghezzi F;Innocente P;Laguardia L;Lazzaro E;Manduchi G;Marchetto C;Mariani A;Murari A;Muraro A;Nowak S;Paccagnella R;Pasqualotto R;Pomaro N;Predebon I;Puiatti M E;Rebai M;Ricci D;Rigamonti D;Schmuck S;Sozzi C;Tardocchi M;Terranova D;Uccello A;Vianello N;
2019

Abstract

Transport modelling of Joint European Torus (JET) dimensionless collisionality scaling experiments in various operational scenarios is presented. Interpretative simulations at a fixed radial position are combined with predictive JETTO simulations of temperatures and densities, using the TGLF transport model. The model includes electromagnetic effects and collisions as well as (E)over-right-arrow x (b)over-right-arrow shear in Miller geometry. Focus is on particle transport and the role of the neutral beam injection (NBI) particle source for the density peaking. The experimental 3-point collisionality scans include L-mode, and H-mode (D and H and higher beta D plasma) plasmas in a total of 12 discharges. Experimental results presented in (Tala et al 2017 44th EPS Conf.) indicate that for the H-mode scans, the NBI particle source plays an important role for the density peaking, whereas for the L-mode scan, the influence of the particle source is small. In general, both the interpretative and predictive transport simulations support the experimental conclusions on the role of the NBI particle source for the 12 JET discharges.
2019
Istituto dei Sistemi Complessi - ISC
Istituto per la Scienza e Tecnologia dei Plasmi - ISTP
Inglese
61
11
115004-1
115004-12
12
https://iopscience.iop.org/article/10.1088/1361-6587/ab2f45/meta
Sì, ma tipo non specificato
turbulence
ITG
gyro-fluid
modelling
particle transport
Electronic ISSN: 1361-6587 / This work has been carried out within the framework of the EUROfusion Consortium and has received funding from the Euratom research and training programme 2014-2018 and 2019-2020 under grant agreement No 633053.
1252
info:eu-repo/semantics/article
262
Eriksson, F; Fransson, E; Oberparleiter, M; Nordman, H; Strand, P; Salmi, A; Tala, T; Abduallev, S; Abhangi, M; Abreu, P; Afanasev, V; Afzal, M; Aggar...espandi
01 Contributo su Rivista::01.01 Articolo in rivista
open
   Implementation of activities described in the Roadmap to Fusion during Horizon 2020 through a Joint programme of the members of the EUROfusion consortium
   EUROfusion
   H2020
   633053
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/406833
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