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research article

EUROfusion-theory and advanced simulation coordination (E-TASC): programme and the role of high performance computing

Litaudon, X
•
Jenko, F
•
Borba, D
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February 8, 2022
Plasma Physics and Controlled Fusion

This paper is a written summary of an overview oral presentation given at the 1st Spanish Fusion High Performance Computer (HPC) Workshop that took place on the 27 November 2020 as an online event. Given that over the next few years ITER24 will move to its operation phase and the European-DEMO design will be significantly advanced, the EUROfusion consortium has initiated a coordination effort in theory and advanced simulation to address some of the challenges of the fusion research in Horizon EUROPE (2021–2027), i.e. the next EU Framework Programme for Research and Technological Development. This initiative has been called E-TASC, which stands for EUROfusion-Theory and Advanced Simulation Coordination. The general and guiding principles of E-TASC are summarized in this paper. In addition, an overview of the scientific results obtained in the pilot phase (2019–2020) of E-TASC are provided while highlighting the importance of the required progress in computational methods and HPC techniques. In the initial phase, five pilot theory and simulation tasks were initiated: towards a validated predictive capability of the low to high transition and pedestal physics; runaway electrons in tokamak disruptions in the presence of massive material injection; fast code for the calculation of neoclassical toroidal viscosity in stellarators and tokamaks; development of a neutral gas kinetics modular code; European edge and boundary code for reactor-relevant devices. In this paper, we report on recent progress made by each of these projects.

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Type
research article
DOI
10.1088/1361-6587/ac44e4
Author(s)
Litaudon, X
Jenko, F
Borba, D
Borodin, D V
Braams, B J
Brezinsek, S
Calvo, I
Coelho, R
Donné, A J H
Embréus, O
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Date Issued

2022-02-08

Published in
Plasma Physics and Controlled Fusion
Volume

64

Issue

3

Article Number

034005

Subjects

theory and simulation

•

high performance computing

•

EUROfusion

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
SPC  
FunderGrant Number

EU funding

633053

Available on Infoscience
February 9, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/185228
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