Simulations of 4D edge transport and dynamics using the TEMPEST gyro-kinetic code

POSTER

Abstract

Simulation results are presented for tokamak edge plasmas with a focus on the 4D (2r,2v) option of the TEMPEST continuum gyro-kinetic code. A detailed description of a variety of kinetic simulations is reported, including neoclassical radial transport from Coulomb collisions, electric field generation, dynamic response to perturbations by geodesic acoustic modes, and parallel transport on open magnetic-field lines. Comparison is made between the characteristics of the plasma solutions on closed and open magnetic-field line regions separated by a magnetic separatrix, and simple physical models are used to qualitatively explain the differences observed in mean flow and electric-field generation. The status of extending the simulations to 5D turbulence will be summarized. The code structure used in this ongoing project is also briefly described, together with future plans.

*Work performed under auspices of USDOE through contract W7405-ENG-48 at UC LLNL.

Authors

  • T.D. Rognlien

    • LLNL
  • B.I. Cohen

  • R.H. Cohen

  • M.R. Dorr

  • J.A.F. Hittinger

  • G.D. Kerbel

  • W.M. Nevins

  • Z. Xiong

  • X.Q. Xu

    • LLNL