Reduced model (nSOLT) turbulence simulations of neutral-plasma interaction in the SOL

POSTER

Abstract

The 2D scrape-off-layer turbulence code (nSOLT) includes neutral-plasma interactions; a Boltzmann equation describes the evolution of the bi-normally (y) averaged neutral distribution function, G(x,v$_{\mathrm{x}}$,t), in the radial dimension, and neutral-plasma interactions are mediated by charge-exchange and ionization rates based on poloidally-averaged plasma density and temperature. The code has been verified in comparisons with the Monte Carlo neutral transport code DEGAS 2 [1]. Recent modifications of nSOLT will be described, including (i) an updated convective transport algorithm and (ii) the addition of a spatially distributed source of neutrals for modeling diverter recycling. For MAST-U-like parameters, equilibrium and turbulence simulations with self-consistent neutral and plasma profiles will be discussed. [1] D.A. Russell, J.R. Myra and D.P. Stotler, Phys. Plasmas \textbf{26}, 022304 (2019).

*Work supported by the US Department of Energy Office of Science, Office of Fusion Energy Sciences under Award Numbers DE-FG02-97ER54392 and DE-SC0019270.

Authors

  • David Russell

    • Lodestar Research Corporation (United States)
  • J.R. Myra

    • Lodestar
    • Lodestar Research Corp.
    • Lodestar Research
    • Loadstar Research Corp
    • Lodestar Corporation
    • Lodestar Research Corporation (United States)
    • Lodestar Research Corporation
  • Fulvio Militello

    • CCFE
  • David Moulton

    • CCFE
    • CCFE, Culham Science Center, Abingdon UK
    • CCFE, Culham, Oxfordshire, UK
    • UKAEA-CCFE