Modeling Error Fields and Disruptions in NSTX-U

POSTER

Abstract

Error field penetration and mode locking are among the most common sources of disruptions in tokamaks, and may also play an important role in the suppression of edge-localized modes (ELMs). Results from NSTX-U operations suggest that error fields may have had a considerable impact on plasma stability and transport, with locked modes commonly observed in L-mode discharges. We present models of error fields due to imperfections in the toroidal and poloidal field coils in NSTX-U, and consider the impact of these fields on the plasma equilibrium, including the impact on the magnetic pitch angle and heat flux at the divertor targets in high-performance NSTX-U model equilibria. Furthermore, we report on progress on modeling the nonlinear processes of error field penetration and disruptions with the extended-MHD code M3D-C1, with the goal developing predictive models of the processes by which error field penetration leads to disruptions or ELM suppression.

*This work was supported by US DOE Contract DE-AC02-09-CH11466 and the SciDAC Center for Extended MHD Modeling.

Authors

  • Nate Ferraro

    • PPPL
    • Princeton Plasma Phys Lab
    • Princeton Plasma Physics Laboratory
  • C.E. Myers

    • PPPL
    • Princeton Plasma Physics Laboratory
  • J.-K. Park

    • Princeton Plasma Physics Laboratory
    • Princeton Plasma Physics Lab
    • PPPL
  • David Pfefferle

    • PPPL
    • Princeton Plasma Physics Laboratory (PPPL), Princeton NJ, 08543-0451, USA
    • Princeton Plasma Phys Lab
  • Stephen C. Jardin

    • PPPL
    • Princeton Plasma Phys Lab
    • Princeton Plasma Physics Laboratory
  • M T Beidler

    • U. Wisconsin, Madison
    • University of Wisconsin-Madison
  • M.L. Reinke

    • Oak Ridge National Lab
    • ORNL