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Numerical tools for burning plasmas

  • A. Mishchenko
  • , A. Biancalani
  • , M. Borchardt
  • , A. Bottino
  • , S. Briguglio
  • , R. Dumont
  • , J. Ferreira
  • , J. P. Graves
  • , T. Hayward-Schneider
  • , R. Kleiber
  • , A. Könies
  • , E. Lanti
  • , Ph Lauber
  • , H. Leyh
  • , Z. X. Lu
  • , H. Lütjens
  • , B. McMillan
  • , M. Campos Pinto
  • , E. Poli
  • , B. Rettino
  • B. Rofman, J. N. Sama, C. Slaby, F. Vannini, L. Villard, G. Vlad, X. Wang, F. Widmer, F. Zonca
  • Max-Planck-Institut für Plasmaphysik
  • Research Center
  • ENEA Centro Ricerche Frascati
  • CEA Cadarache
  • Instituto Superior Técnico
  • ENAC-IIC-GEL
  • University of Warwick
  • Univ.́ Henri Poincaré
  • National Institutes of Natural Sciences

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

The software stack under development within a European coordinated effort on tools for burning plasma modelling is presented. The project is organised as a Task (TSVV Task 10) under the new E-TASC initiative (Litaudon et al 2022 Plasma Phys. Control. Fusion 64 034005). This is a continued effort within the EUROfusion inheriting from the earlier European coordination projects as well as research projects based at various European laboratories. The ongoing work of the TSVV Tasks is supported by the Advanced Computing Hubs. Major projects requiring the high performance computing (HPC) resources are global gyrokinetic codes and global hybrid particle-magnetohydrodynamics (MHD) codes. Also applications using the integrated modelling tools, such as the Energetic-Particle Workflow, based on the ITER Integrated Modelling & Analysis Suite (IMAS), or the code package for modelling radio-frequency heating and fast-ion generation may require intensive computation and a substantial memory footprint. The continual development of these codes both on the physics side and on the HPC side allows us to tackle frontier problems, such as the interaction of turbulence with MHD-type modes in the presence of fast particles. One of the important mandated outcomes of the E-TASC project is the IMAS-enabling of EUROfusion codes and release of the software stack to the EUROfusion community.

langue originaleAnglais
Numéro d'article064001
journalPlasma Physics and Controlled Fusion
Volume65
Numéro de publication6
Les DOIs
étatPublié - 1 juin 2023

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