Modeling ECCD/MHD coupling using NIMROD, GENRAY, and the Integrated Plasma Simulator

POSTER

Abstract

We summarize ongoing theoretical/numerical work relevant to the development of a self--consistent framework for the inclusion of RF effects in fluid simulations; specifically, we consider the stabilization of resistive tearing modes in tokamak geometry by electron cyclotron current drive. In the fluid equations, ad hoc models for the RF--induced currents have previously been shown to shrink or altogether suppress the nonlinearly saturated magnetic islands generated by tearing modes; progress toward a self--consistent model is reported. The interfacing of the NIMROD [1] code with the GENRAY/CQL3D [2] codes (which calculate RF propagation and energy/momentum deposition) via the Integrated Plasma Simulator (IPS) framework [3] is explained, RF-induced rational surface motion and the equilibration of RF--induced currents over plasma flux surfaces are investigated, and the efficient reduction of saturated island widths through time modulation and spatial localization of the ECCD is explored. [1] Sovinec {\it et al.}, JCP {\bf 195}, 355 (2004) [2]www.compxco.com [3] Both the IPS development and the research presented here are part of the SWIM project. Funded by U.S. DoE.

Authors

  • Thomas G. Jenkins

  • D.D. Schnack

  • C.R. Sovinec

  • C.C. Hegna

  • J.D. Callen

  • F. Ebrahimi

    • UW-Madison
  • S.E. Kruger

  • J. Carlsson

    • Tech-X
  • E.D. Held

  • J.-Y. Ji

    • Utah State U.
  • R.W. Harvey

  • A.P. Smirnov

    • CompX
  • W.R. Elwasif

    • ORNL