Back to Search
Start Over
The dependence of confinement on the isotope mass in the core and the edge of AUG and JET-ILW H-mode plasmas
- 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