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Progress on High β<sub>N</sub> Steady State Scenario in KSTAR

ORAL

Abstract

The low qmin≈1, high βN scenario at a relatively high value of the internal inductance, ??i is one of the promising candidates for the ITER steady-state scenario. The high ??i scenario on KSTAR has achieved βN≈3, G=βNH89/q952>0.3, fNI≈0.9 at q95=5, approaching the normalized performance required for the fully non-inductive, Q=5 goal for ITER. The dRsep>0 (upper single null) operation achieved an “optimized” ??i≈1 by considering trade-off between the edge pedestal and high ??i at lower density to maximize the current drive efficiency for the fully non-inductive operation. The no-wall βN limit calculated by DCON, βN,limit≈3.9, indicates that higher βN operation is possible even without wall stabilization. The higher current drive efficiency for the central electron cyclotron current drive (ECCD) compensates for the relatively low bootstrap current fraction for the fully non-inductive operation. No obvious sign of performance degradation has been observed for the pulse length of ~10 sec at βN≈3. We will report recent progress to achieve higher βN>3 and longer pulse > 15 sec, guided by the integrated scenario modeling IPS-FASTRAN.

Presenters

  • Jin Myung Park

    Oak Ridge National Laboratory, ORNL

Authors

  • Jin Myung Park

    Oak Ridge National Laboratory, ORNL

  • K. Kim

    Oak Ridge National Laboratory

  • Y.M. Jeon

    Korea Institute of Fusion Energy

  • Hyunsun Han

    Korea Institute of Fusion Energy, KFE, Korea Institute of Fusion Energy, Korea

  • J.S. Kang

    Korea Institute of Fusion Energy, Korea Institute of Fusion Energy, Korea

  • H.S. Kim

    Korea Institute of Fusion Energy

  • J. Chung

    Korea Institute of Fusion Energy, Korea Institute of Fusion Energy, Korea

  • Jinseok Ko

    Korea Institute of Fusion Energy, KFE, Korea Institute of Fusion Energy, Korea

  • Christopher T Holcomb

    Lawrence Livermore Natl Lab, Lawrence Livermore National Laboratory

  • J.R. Ferron

    General Atomics