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3D two-temperature magnetohydrodynamic modeling of fast thermal quenches due to injected impurities in tokamaks
- Source :
- Nuclear Fusion. 59:016001
- Publication Year :
- 2018
- Publisher :
- IOP Publishing, 2018.
-
Abstract
- An integrated model for the ionization, radiation, and advection of impurities in the extended-magnetohydrodynamic code M3D-C1 is described. This implementation makes use of the KPRAD model, which calculates bremsstrahlung radiation and impurity ionization, recombination, and radiation rates using a model in which the density of each charge state is advanced separately. The integrated model presented here allows the independent evolution of electron and ion temperatures, which is necessary to accurately model cases where the electron temperature drops more quickly than the electron–ion thermal equilibration time. This model is used to simulate the disruption of a model NSTX discharge caused by the introduction of argon impurities, using physically realistic resistivity. Despite well-mixed impurities, contraction of the current channel is found to lead to magnetohydrodynamic instabilities that result in stochastization of the magnetic field, a fast thermal quench, and localized parallel electric fields that can exceed the axisymmetric values by a factor of five for brief periods.
- Subjects :
- Nuclear and High Energy Physics
Tokamak
Materials science
Bremsstrahlung
Electron
Condensed Matter Physics
01 natural sciences
010305 fluids & plasmas
Magnetic field
Computational physics
law.invention
law
Electric field
Ionization
0103 physical sciences
Electron temperature
Magnetohydrodynamic drive
010306 general physics
Subjects
Details
- ISSN :
- 17414326 and 00295515
- Volume :
- 59
- Database :
- OpenAIRE
- Journal :
- Nuclear Fusion
- Accession number :
- edsair.doi...........d4ba5aad8e6a6f820fa3a68997608b12
- Full Text :
- https://doi.org/10.1088/1741-4326/aae990