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Progress in development of the ITER High Fidelity Plasma Simulator

ORAL

Abstract

The ITER High Fidelity Plasma Simulator (HFPS), currently being developed by combining a core-edge-SOL transport modelling code, JINTRAC, and a free-boundary plasma equilibrium evolution code, DINA, will be used to complete and refine the development of ITER plasma scenarios as well as to study ITER physics interpreting the experimental observations. The first proto-type of the ITER HFPS has been recently developed following the IMAS integrated modelling paradigm and using two different code and physics coupling schemes, namely loose and close coupling, in order to facilitate the verification of validity ranges of close coupling simulations, where the explicit data exchange is applied not to deteriorate the overall performance of the coupled simulation at the data exchange frequency tuned for magnetic controllers. The first proto-type has successfully demonstrated its potential for integrated free-boundary and core transport modelling by applying it to ITER scenarios. These simulations also captured non-linear responses of the free-boundary plasma to transients such as the current ramp-up and confinement mode transitions, as well as to the magnetic and kinetic controls using the PF coils, heating and current drive, and fuelling systems. A further extension of the high fidelity physics modelling capability across the plasma core, edge/SOL and target area is foreseen with the application of parallelized/reduced physics-based transport and source models and the implementation of self-consistent updates of the SOL grids along with the free-boundary equilibrium evolution.

Presenters

  • Sun Hee Kim

    ITER Organization

Authors

  • Sun Hee Kim

    ITER Organization

  • Francis J Casson

    Culham Centre for Fusion Energy, UKAEA, CCFE, Culham Science Centre

  • Gerard Corrigan

    CCFE, Culham Science Centre

  • Maksim Dubrov

    ITER Organization

  • Yuri Gribov

    ITER Organization

  • Olivier Hoenen

    ITER Organization

  • Rustam R Khayrutdinov

    Kurchatov Institute

  • Eduard Khayrutdinov

    Kurchatov Institute

  • Peter Knight

    CCFE, Culham Science Centre

  • Florian Koechl

    ITER Organization

  • Sergey Konovalov

    Kurchatov Institute

  • Alberto Loarte

    ITER Organization

  • Victor E Lukash

    Kurchatov Institute

  • Sergei Medvedev

    Tokamak Energy Ltd, Keldysh Institute of Applied Mathematics

  • Elina Militello Asp

    CCFE, Culham Science Centre

  • Simon D Pinches

    ITER organization, ITER Organization

  • Alexei R Polevoi

    ITER organization, ITER Organization

  • Mireille Schneider

    ITER organization, ITER Organization

  • Ziga Stancar

    UKAEA, United Kingdom Atomic Energy Authority, Culham Science Centre, Abingdon, UK, Slovenian Fusion Association, Josef Stefan Institute, CCFE, Culham Science Centre

  • Guillermo Suárez López

    ITER Organization

  • David Taylor

    CCFE, Culham Science Centre