APS Logo

A Study of Shattered Pellet Injection Scheme Using Multiple Injection System In KSTAR

ORAL

Abstract

ITER plans to systematically inject multiple shattered pellets to reliably dissipate thermal and electromagnetic energies which are rapidly released in a plasma disruption. It is expected that the effectiveness of disruption mitigation in ITER will heavily depend on the material composition of the pellets and also their injection timing since, depending on the order of injection, subsequent pellets will encounter plasmas of completely different properties. KSTAR with two shattered pellet injectors (SPIs) which form a symmetry in the toroidal direction can independently inject three different pellets from each SPI. KSTAR has conducted experiments to validate the disruption mitigation scheme of ITER using multiple shattered pellets by varying their composition and timing. For instance, in order to prevent runaway electron generation, when pure deuterium pellets are first injected and then Ne-doped pellets follow them, there is a tendency to show more localized radiation compared to the case in which only Ne-doped pellets are injected. To measure the characteristics of the plasma during disruption mitigation that happens in a short period of time within a few milliseconds, we also operated dedicated diagnostics that can measure related physical process such as fast bolometry, fast visible camera, and short wavelength interferometry. This result will contribute to establishing efficient injection scheme of ITER.

Presenters

  • Jayhyun Kim

    Korea Institute of Fusion Energy, KFE

Authors

  • Jayhyun Kim

    Korea Institute of Fusion Energy, KFE

  • Larry R BAYLOR

    ORNL, Oak Ridge National Laboratory

  • Michael LEHNEN

    ITER Organization, Route de Vinon sur Verdon, 13115 St Paul Lez Durance, France, ITER Organization, ITER Organization, France

  • Soo Hwan Park

    Korea Institute of Fusion Energy

  • Jae-wook Kim

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

  • Jeongwon Yoo

    Korea Institute of Fusion Energy

  • Donggeun Lee

    Korea Advanced Institute of Science and Technology, Korea, Korea Advanced Institute of Science and Technology

  • Nicholas W Eidietis

    General Atomics

  • Daisuke Shiraki

    Oak Ridge National Lab, Oak Ridge National Laboratory

  • Jun Gyo Bak

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

  • Dongjae Kwak

    Pohang University of Science and Technology

  • Ju-hyueok Jang

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

  • Kun Su Lee

    Korea Institute of Fusion Energy

  • Kwang Pyo Kim

    Korea Institute of Fusion Energy

  • Y.C. Ghim

    Korea Advanced Institute of Science and Technology, Korea, KAIST, Korea Advanced Institute of Science and Technology

  • Gunsu Yun

    Pohang Univ of Sci & Tech, Pohang University of Science and Technology

  • Kwan Chul Lee

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

  • June-woo W Juhn

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