Speed-up of SOLPS-ITER code for tokamak edge modeling
Author:
Publisher
IOP Publishing
Subject
Condensed Matter Physics,Nuclear and High Energy Physics
Link
http://iopscience.iop.org/article/10.1088/1741-4326/aae162/pdf
Reference15 articles.
1. Finalizing the ITER divertor design: The key role of SOLPS modeling
2. Numerical modelling of high density JET divertor plasma with the SOLPS4.2 (B2-EIRENE) code
3. Simulation of tokamak edge plasma including self-consistent electric fields
4. The high field side high density region in SOLPS-modeling of nitrogen-seeded H-modes in ASDEX Upgrade
5. New B2SOLPS5.2 transport code for H-mode regimes in tokamaks
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1. SOLPS-ITER numerical evaluation about the effect of drifts in a divertor configuration of ASDEX-Upgrade and a limiter configuration of J-TEXT;Fusion Engineering and Design;2023-11
2. Compression of tokamak boundary plasma simulation data using a maximum volume algorithm for matrix skeleton decomposition;Journal of Computational Physics;2023-07
3. Summary report of the 4th IAEA Technical Meeting on Fusion Data Processing, Validation and Analysis (FDPVA);Nuclear Fusion;2023-03-15
4. Time-dependent SOLPS-ITER simulations of the tokamak plasma boundary for model predictive control using SINDy *;Nuclear Fusion;2023-03-08
5. Data-driven linear time advance operators for the acceleration of plasma physics simulation;Physics of Plasmas;2022-11
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