The ITER Research Plan envision operation around half of the nominal magnetic field (i.e. around B = 2.65 T) as a path to baseline operation. This work discusses constraints on the optimal range of magnetic field, which is bounded in the lower limit by the presence of the third-harmonic electron cyclotron resonance at half field, and on the upper limit by the loss of core heating and current drive. It will be shown that increasing the magnetic field by only 3%, i.e. to 2.75 T, eliminates the third harmonic parasitic absorption without compromising demonstration of access to H-mode, while operating at a magnetic field of 3.0 T – previously proposed for optimal use of the ion cyclotron system – would impair the use of the electron cyclotron system for core-heating and current drive. Operation at 2.65 T would still be possible if the polarization of the equatorial launcher is changed from X-mode to O-mode in the current flattop phase.
Implications of parasitic absorption of electron cyclotron waves on ITER operation around half-field
Poli F.M.; Farina D.; Figini L.; Poli E.
Journal:
Nuclear fusion 61 (12),
pp. 126035-1 - 126035-10
Year:
2021
ISTP Authors: Lorenzo Figini
Keywords: integrated modeling, half-field operation, non-active phase, ITER, Electron cyclotron heating
Research Activitie: JOURNAL ARTICLES
Related products
-
PCCP. Physical chemistry chemical physics (Print) 23 (29), pp. 15475 - 15479 Year: 2021 DOI: 10.1039/d1cp01976g
Reconciling experimental and theoretical vibrational deactivation in low-energy O + N2 collisions
Hong, Q., Bartolomei, M., Esposito, F., Sun, Q., Pirani, F.
-
The astrophysical journal. Letters (Online) 922 (1), pp. L18-1 - L18-5 Year: 2021 DOI: 10.3847/2041-8213/ac36cf
Turbulent Magnetogenesis in a Collisionless Plasma
Pucci F.; Viviani M.; Valentini F.; Lapenta G.; Matthaeus W.H.; Servidio S.
-
Nuclear fusion 61 (7), pp. 076012-1 - 076012-14 Year: 2021 DOI: 10.1088/1741-4326/abfb13
H-mode plasmas in the pre-fusion power operation 1 phase of the ITER research plan
Loarte A.; Polevoi A.R.; Schneider M.; Pinches S.D.; Fable E.; Militello Asp E.; Baranov Y.; Casson F.; Corrigan G.; Garzotti L.; Harting D.; Knight P.; Koechl F.; Parail V.; Farina D.; Figini L.; Nordman H.; Strand P.; Sartori R.
-
Trends in Environmental Analytical Chemistry 30 pp. e00121-1 - e00121-12 Year: 2021 DOI: 10.1016/j.teac.2021.e00121
Laser-Induced Breakdown Spectroscopy applied to environmental systems and their potential contaminants. An overview of advances achieved in the last few years
Goncalves D.A.; Senesi G.S.; Nicolodelli G.
English
Italiano