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The dependence of confinement on the isotope mass in the core and the edge of AUG and JET-ILW H-mode plasmas

Authors :
P.A. Schneider
C. Angioni
L. Frassinetti
L. Horvath
M. Maslov
F. Auriemma
M. Cavedon
C.D. Challis
E. Delabie
M.G. Dunne
J.M. Fontdecaba
J. Hobirk
A. Kappatou
D.L. Keeling
B. Kurzan
M. Lennholm
B. Lomanowski
C.F. Maggi
R.M. McDermott
T. Pütterich
A. Thorman
M. Willensdorfer
null the ASDEX Upgrade Team
null the EUROfusion MST1 Team
null JET Contributors
Schneider, P
Angioni, C
Frassinetti, L
Horvath, L
Maslov, M
Auriemma, F
Cavedon, M
Challis, C
Delabie, E
Dunne, M
Climent, J
Hobirk, J
Kappatou, A
Keeling, D
Kurzan, B
Lennholm, M
Lomanowski, B
Maggi, C
Mcdermott, R
Putterich, T
Thorman, A
Willensdorfer, M
ASDEX Upgrade Team, Max Planck Institute for Plasma Physics, Max Planck Society
EUROfusion MST1 Team
JET Contributors
Source :
Nuclear fusion 62 (2022): 026014-1–026014-11. doi:10.1088/1741-4326/ac3e82, info:cnr-pdr/source/autori:Schneider, P. A.; Angioni, C.; Frassinetti, L.; Horvath, L.; Maslov, M.; Auriemma, F.; Cavedon, M.; Challis, C. D.; Delabie, E.; Dunne, M. G.; Climent, J. M. Fontdecaba; Hobirk, J.; Kappatou, A.; Keeling, D. L.; Kurzan, B.; Lennholm, M.; Lomanowski, B.; Maggi, C. F.; McDermott, R. M.; Puetterich, T.; Thorman, A.; Willensdorfer, M./titolo:The dependence of confinement on the isotope mass in the core and the edge of AUG and JET-ILW H-mode plasmas/doi:10.1088%2F1741-4326%2Fac3e82/rivista:Nuclear fusion/anno:2022/pagina_da:026014-1/pagina_a:026014-11/intervallo_pagine:026014-1–026014-11/volume:62, Nuclear Fusion
Publication Year :
2022
Publisher :
International Atomic Energy Agency., Wien, 2022.

Abstract

Experiments in ASDEX Upgrade (AUG) and JET with the ITER-like wall (JET-ILW) are performed to separate the pedestal and core contributions to confinement in H-modes with different main ion masses. A strong isotope mass dependence in the pedestal is found which is enhanced at high gas puffing. This is because the ELM type changes when going from D to H for matched engineering parameters, which is likely due to differences in the inter ELM transport with isotope mass. The pedestal can be matched in H and D plasmas by varying only the triangularity and keeping the engineering parameters relevant for core transport the same. With matched pedestals Astra/TGLF (Sat1geo) core transport simulations predict the experimental profiles equally well for H and D. These core transport simulations show a negligible mass dependence and no gyro-Bohm scaling is observed. However, to match the experimental observations at medium β it is required to take the fast-ion dilution and rotation into account. This is not enough for high β plasmas where for the first time a profile match between H and D plasmas was achieved experimentally. Under these conditions quasilinear modelling with TGLF over predicts the transport in the core of H and D plasmas alike.

Details

Language :
English
Database :
OpenAIRE
Journal :
Nuclear fusion 62 (2022): 026014-1–026014-11. doi:10.1088/1741-4326/ac3e82, info:cnr-pdr/source/autori:Schneider, P. A.; Angioni, C.; Frassinetti, L.; Horvath, L.; Maslov, M.; Auriemma, F.; Cavedon, M.; Challis, C. D.; Delabie, E.; Dunne, M. G.; Climent, J. M. Fontdecaba; Hobirk, J.; Kappatou, A.; Keeling, D. L.; Kurzan, B.; Lennholm, M.; Lomanowski, B.; Maggi, C. F.; McDermott, R. M.; Puetterich, T.; Thorman, A.; Willensdorfer, M./titolo:The dependence of confinement on the isotope mass in the core and the edge of AUG and JET-ILW H-mode plasmas/doi:10.1088%2F1741-4326%2Fac3e82/rivista:Nuclear fusion/anno:2022/pagina_da:026014-1/pagina_a:026014-11/intervallo_pagine:026014-1–026014-11/volume:62, Nuclear Fusion
Accession number :
edsair.doi.dedup.....16b23081b642d2b2c19486d688f5c0fc
Full Text :
https://doi.org/10.1088/1741-4326/ac3e82