Reactor-relevant characteristics of DIII-D negative triangularity discharges

POSTER

Abstract

A highlight of DIII-D experiments with negative triangularity (NT) shaped discharges was H-mode level confinement at significantly high beta with L-mode edge conditions[1]. Beyond the favorable energy confinement, indications of improved momentum confinement were observed in NT discharges compared to matched positive triangularity (PT) cases. Co-NBI-heated discharges had higher core rotation and rotational shear than predicted from scaling laws while ECH-dominant discharges had toroidal rotation within the expected range. Additionally, a comparison of bootstrap current between equivalent discharges showed somewhat higher bootstrap current that is more broadly distributed and without a peak at the edge in NT over PT Also, NT discharges exhibit 30-60\% higher Shafranov shift than PT for the same plasma pressure. Overall the many positive characteristics of negative triangularity plasmas, with prospects for low consequence ELMs and a low-field side divertor, make it an attractive option for a reactor. \newline [1] Marinoni et al., Phys. Plasmas 26, 042515 (2019).

*Work supported by the US DOE under DE-FG02-97ER54415 and DE-FC02-04ER54698

Authors

  • M.E. Austin

    • U. Texas-Austin
    • UT-Austin
    • University of Texas-Austin
    • University of Texas at Austin
    • U. Texas
  • A. Marinoni

    • MIT-PSFC
    • Massachusetts Institute of Technology
    • MIT
  • J.S. DeGrassie

    • GA
  • C.C. Petty

    • General Atomics
    • GA
    • General Atomics, San Diego, CA
  • S.P. Smith

    • General Atomics
    • University of Wisconsin - Madison
    • GA
  • R. Xie

    • UT-Austin
    • U. Texas