Using the JOREK non-linear MHD code which was originally focussed on plasma edge instabilities, significant disruption related research has been established in the past years including tearing mode dynamics, impurity dynamics, natural disruptions, mitigated disruptions, RE dynamics, the interaction of REs and MHD activitiy, vertical displacement events, and eddy/halo currents in conducting structures. Many aspects of those phenomena can already be investigated. However many models are being further developed to become more realistic and suitable for predictive simulations. This presentation aims to provide a brief overview of how JOREK works (numerics), what it can do (models), and what disruption related research is being performed. Present limitations and ongoing developments are mentioned.

Disruption related research with the JOREK code

Bonfiglio D;
2020

Abstract

Using the JOREK non-linear MHD code which was originally focussed on plasma edge instabilities, significant disruption related research has been established in the past years including tearing mode dynamics, impurity dynamics, natural disruptions, mitigated disruptions, RE dynamics, the interaction of REs and MHD activitiy, vertical displacement events, and eddy/halo currents in conducting structures. Many aspects of those phenomena can already be investigated. However many models are being further developed to become more realistic and suitable for predictive simulations. This presentation aims to provide a brief overview of how JOREK works (numerics), what it can do (models), and what disruption related research is being performed. Present limitations and ongoing developments are mentioned.
2020
Istituto per la Scienza e Tecnologia dei Plasmi - ISTP
JOREK
non-linear MHD
MHD
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/427443
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