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JINTRAC: A System of Codes for Integrated Simulation of Tokamak Scenarios

Plasma and Fusion Research · 2014 · Vol. 9(0) · pp. 3403023–3403023
M. RomanelliGerard CorriganV. ParailS. WiesenR. AmbrosinoP. da Silva Aresta BeloL. GarzottiD. HartingF. KöchlT. KoskelaL. Lauro-TaroniC. MarchettoM. MatteiE. Militello-AspM. F. F. NaveStanislas PamelaAntti SalmiP. StrandG. SzepesiEFDA-JET Contributors

Abstract

Operation and exploitation of present and future Tokamak reactors require advanced scenario modeling in order to optimize engineering parameters in the design phase as well as physics performance during the exploitation phase. The simulation of Tokamak scenarios involves simultaneous modeling of different regions of the reactor, characterized by different physics and symmetries, in order to predict quantities such as particle and energy confinement, fusion yield, power deposited on wall, wall load from fast particles. JINTRAC is a system of 25 interfaced Tokamak-physics codes for the integrated simulation of all phases of a Tokamak scenario. JINTRAC predictions reflect the physics and assumptions implemented in each module and extensive comparison with experimental data is needed to allow validation of the models and improvement of Tokamak-physics understanding.

Magnetic confinement fusion researchNuclear reactor physics and engineeringFusion materials and technologiesTokamakNuclear engineeringFusion powerPower (physics)Magnetic confinement fusionPhysicsComputer sciencePlasmaNuclear physicsEngineering
Citations
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References
A gyro-Landau-fluid transport model
Physics of Plasmas · 1997 · 534 citations
A theory-based transport model with comprehensive physics
Physics of Plasmas · 2007 · 396 citations
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