4 papers · 1 filter
3D modelling of thermal loads during unmitigated vertical displacement events in ITER and JET
F. J. Artola, A. Redl, S. N. Gerasimov +9
Predicting three-dimensional thermal loads during tokamak disruptions is essential for ITER yet remains weakly developed. We present a physics-based workflow that couples MHD simul…
Numerical model for pellet rocket acceleration in PELOTON
J. Corbett, R. Samulyak, F. J. Artola +3
A direct numerical simulation model for the rocket acceleration of pellets in thermonuclear fusion devices has been developed for PELOTON, a 3D Lagrangian particle pellet code [R.…
3D MHD modelling of plasmoid drift following massive material injection in a tokamak
M. Kong, E. Nardon, D. Bonfiglio +5
Mechanisms of plasmoid drift following massive material injection are studied via 3D non-linear MHD modelling with the JOREK code, using a transient neutral source deposited at the…
Plasmoid drift and first wall heat deposition during ITER H-mode dual-SPIs in JOREK simulations
D. Hu, F. J. Artola, E. Nardon +6
The heat flux mitigation during the Thermal Quench (TQ) by the Shattered Pellet Injection (SPI) is one of the major elements of disruption mitigation strategy for ITER. It's effici…