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The JOREK non-linear extended MHD code and applications to large-scale instabilities and their control in magnetically confined fusion plasmas
- Source :
- Nuclear Fusion, UPCommons. Portal del coneixement obert de la UPC, Universitat Politècnica de Catalunya (UPC), Nuclear Fusion, 61(6):065001. Institute of Physics, Nuclear Fusion, IOP Publishing, 2021, 61 (6), pp.065001. ⟨10.1088/1741-4326/abf99f⟩, Nuclear fusion 61 (2021): 065001-1–065001-70. doi:10.1088/1741-4326/abf99f, info:cnr-pdr/source/autori:Hoelzl M.; Huijsmans G.T.A.; Pamela S.J.P.; Becoulet M.; Nardon E.; Artola F.J.; Nkonga B.; Atanasiu C.V.; Bandaru V.; Bhole A.; Bonfiglio D.; Cathey A.; Czarny O.; Dvornova A.; Feher T.; Fil A.; Franck E.; Futatani S.; Gruca; Guillard H.; Haverkort J.W.; Holod I.; Hu D.; Kim S.K.; Korving S.Q.; Kos L.; Krebs I.; Kripner L.; Latu G.; Liu F.; Merkel P.; Meshcheriakov D.; Mitterauer V.; Mochalskyy S.; Morales J.A.; Nies R.; Nikulsin N.; Orain F.; Pratt J.; Ramasamy R.; Ramet P.; Reux C.; Sarkimaki K.; Schwarz N.; Singh Verma P.; Smith S.F.; Sommariva C.; Strumberger E.; van Vugt D.C.; Verbeek M.; Westerhof E.; Wieschollek F.; Zielinski J./titolo:The JOREK non-linear extended MHD code and applications to large-scale instabilities and their control in magnetically confined fusion plasmas/doi:10.1088%2F1741-4326%2Fabf99f/rivista:Nuclear fusion/anno:2021/pagina_da:065001-1/pagina_a:065001-70/intervallo_pagine:065001-1–065001-70/volume:61, Nuclear Fusion, 2021, 61 (6), pp.065001. ⟨10.1088/1741-4326/abf99f⟩, Nuclear Fusion, 61(6), Nuclear Fusion, 61, 065001
- Publication Year :
- 2021
-
Abstract
- JOREK is a massively parallel fully implicit non-linear extended MHD code for realistic tokamak X-point plasmas. It has become a widely used versatile code for studying large-scale plasma instabilities and their control developed in an international community. This article gives a comprehensive overview of the physics models implemented, numerical methods applied for solving the equations and physics studies performed with the code. A dedicated section highlights some of the verification work done for the code. A hierarchy of different physics models is available including a free boundary and resistive wall extension and hybrid kinetic-fluid models. The code allows for flux-surface aligned iso-parametric finite element grids in single and double X-point plasmas which can be extended to the true physical walls and uses a robust fully implicit time stepping. Particular focus is laid on plasma edge and scrape-off layer (SOL) physics as well as disruption related phenomena. Among the key results obtained with JOREK regarding plasma edge and SOL, are deep insights into the dynamics of edge localized modes (ELMs), ELM cycles, and ELM control by resonant magnetic perturbations, pellet injection, as well as by vertical magnetic kicks. Also ELM free regimes, detachment physics, the generation and transport of impurities during an ELM, and electrostatic turbulence in the pedestal region are investigated. Regarding disruptions, the focus is on the dynamics of the thermal quench and current quench triggered by massive gas injection (MGI) and shattered pellet injection (SPI), runaway electron (RE) dynamics as well as the RE interaction with MHD modes, and vertical displacement events (VDEs). Also the seeding and suppression of tearing modes (TMs), the dynamics of naturally occurring thermal quenches triggered by locked modes, and radiative collapses are being studied.<br />Comment: Comprehensive review published as special topic article in Nuclear Fusion
- Subjects :
- ELM control
magnetohydrodynamic equations
Tokamak
Vertical displacement events
finite-element-method
edge localized modes
01 natural sciences
010305 fluids & plasmas
law.invention
law
Radiative transfer
Physics
Turbulence
Mechanics
Computational Physics (physics.comp-ph)
Condensed Matter Physics
Finite element method
ddc
disruption mitigation
simulations
[INFO.INFO-DC]Computer Science [cs]/Distributed, Parallel, and Cluster Computing [cs.DC]
physics
Physics - Computational Physics
Nuclear and High Energy Physics
vertical displacement events
FOS: Physical sciences
Plasma (Gasos ionitzats)
high-beta
disruptions
Resonant magnetic perturbations
parallel
Materials magnètics
Physics::Plasma Physics
0103 physical sciences
010306 general physics
Magnetic materials
tokamak
Plasma (Ionized gases)
Física [Àrees temàtiques de la UPC]
edge-localized modes
Nuclear energy
Plasma
stability
Physics - Plasma Physics
Edge localized modes
Plasma Physics (physics.plasm-ph)
Nonlinear system
Disruptions
transport
Energia nuclear
MHD simulations
Magnetohydrodynamics
Disruption mitigation
reduced mhd
Subjects
Details
- Language :
- English
- ISSN :
- 00295515 and 17414326
- Volume :
- 61
- Issue :
- 6
- Database :
- OpenAIRE
- Journal :
- Nuclear Fusion
- Accession number :
- edsair.doi.dedup.....7e036ca64fc4828d4fb44d8d67562630
- Full Text :
- https://doi.org/10.1088/1741-4326/abf99f⟩