The radiation response and the MHD destabilization during the thermal quench after a mixed species shattered pellet injection with impurity species neon and argon are investigated via 3D non-linear MHD simulation using the JOREK code. Both the n = 0 global current profile contraction and the local helical cooling at each rational surface caused by the pellet fragments are found to be responsible for MHD destabilization after the injection. Significant current driven mode growth is observed as the fragments cross low order rational surfaces, resulting in rapidly inward propagating stochastic magnetic field, ultimately causing the core temperature collapse. The thermal quench (TQ) is triggered as the fragments arrive on the q = 1 or q = 2 sur...
3D non-linear MHD simulations of a D2 massive gas injection (MGI) triggered disruption in JET with ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
In order to contribute to the understanding of runaway electron generation mechanisms during tokamak...
The radiation response and the MHD destabilization during the thermal quench after a mixed species s...
First simulations of deuterium shattered pellet injection into an ASDEX Upgrade H-Mode plasma with t...
Radiation asymmetries during disruption mitigation by massive gas injection (MGI) can result in subs...
The MHD response and the penetration of a deuterium shattered pellet into a JET plasma is investigat...
International audience3D non-linear magnetohydrodynamic simulations of a disruption triggered by a m...
Disruption mitigation remains a critical, unresolved challenge for ITER. To aid in addressing this c...
Injections of impurity {open_quotes}killer{close_quotes} pellets on DIII-D have demonstrated partial...
3D non-linear MHD simulations of a D2 massive gas injection (MGI) triggered disruption in JET with ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
In order to contribute to the understanding of runaway electron generation mechanisms during tokamak...
The radiation response and the MHD destabilization during the thermal quench after a mixed species s...
First simulations of deuterium shattered pellet injection into an ASDEX Upgrade H-Mode plasma with t...
Radiation asymmetries during disruption mitigation by massive gas injection (MGI) can result in subs...
The MHD response and the penetration of a deuterium shattered pellet into a JET plasma is investigat...
International audience3D non-linear magnetohydrodynamic simulations of a disruption triggered by a m...
Disruption mitigation remains a critical, unresolved challenge for ITER. To aid in addressing this c...
Injections of impurity {open_quotes}killer{close_quotes} pellets on DIII-D have demonstrated partial...
3D non-linear MHD simulations of a D2 massive gas injection (MGI) triggered disruption in JET with ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Nuclear Science and Engineering...
In order to contribute to the understanding of runaway electron generation mechanisms during tokamak...