most citedRunaway electron beam formation, vertical motion, termination and wall loads in EU-DEMO

1 citations · 1 across the 2 of their papers we have counts for

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physics.plasm-ph2026

Implementation and verification of the avalanche source in a 3D full-f particle-in-cell model of relativistic electrons for studies of tokamak disruptions

Fiona Wouters, Hannes Bergström, Matthias Hoelzl +3

Disruptions threaten tokamak operation not only because of large in-vessel forces and thermal heat loads, but also because some electrons may be accelerated to relativistic energie…

physics.plasm-ph2026

Quantitative 3D non-linear simulations of shattered pellet injection in ASDEX Upgrade using JOREK

W. Tang, M. Hoelzl, P. Heinrich +16

Shattered pellet injection (SPI) as primary mitigation method for major disruptions in ITER has a large parameter space available for optimization including the total amount of inj…

physics.plasm-ph20241 cited

Runaway electron beam formation, vertical motion, termination and wall loads in EU-DEMO

F. Vannini, V. Bandaru, H. Bergstroem +9

Runaway electron loads onto material structures are a major concern for future large tokamaks due to the efficient avalanching at high plasma currents. Here, we perform predictive…

physics.plasm-ph20246 cited

Neural-Parareal: Dynamically Training Neural Operators as Coarse Solvers for Time-Parallelisation of Fusion MHD Simulations

S. J. P. Pamela, N. Carey, J. Brandstetter +10

The fusion research facility ITER is currently being assembled to demonstrate that fusion can be used for industrial energy production, while several other programmes across the wo…

physics.plasm-ph2024

Implementation of matrix compression in the coupling of JOREK to realistic 3D conducting wall structures

Federico Cipolletta, Nina Schwarz, Matthias Hoelzl +6

JOREK is an advanced non-linear simulation code for studying MHD instabilities in magnetically confined fusion plasmas and their control and/or mitigation. A free-boundary and resi…