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Stable plasma start-up in the KSTAR device under various discharge conditions

机译:在各种放电条件下,KSTAR设备中的稳定等离子体启动

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摘要

A time series of static nonlinear ferromagnetic calculations was performed to mimic the time-dependent modelling of plasma start-up by assessing the effects of the ferromagnetic Incoloy 908 used in the superconducting coil jackets of the Korea Superconducting Tokamak Advanced Research (KSTAR) device. Time-series calculations of a two-dimensional axisymmetric circuit model with nonlinear ferromagnetic effects enabled us to find appropriate waveforms for the KSTAR poloidal field coil currents that satisfied various start-up requirements, such as the formation and sustainment of field nulls, a sufficient amount of magnetic flux for further plasma current ramp-up, sufficiently large E_t · B_t/B_⊥ > 1 kVm~(11) contours for successful breakdown, plasma current toroidal equilibria, etc. In addition to the aforementioned requirements, the results introduced in this report also provided the positional stability of the plasma current channel against radial as well as vertical perturbations by compensating the field deformation originating from the ferromagnetic effects. With the improved positional stability, robust plasma startup was achieved during the 2010 KSTAR campaign under various discharge conditions such as the recovery process from plasma disruptions.
机译:通过评估韩国超导Tokamak Advanced Research(KSTAR)设备超导线圈护套中使用的铁磁Incoloy 908的影响,进行了静态非线性铁磁计算的时间序列,以模拟随时间变化的等离子体启动建模。具有非线性铁磁效应的二维轴对称电路模型的时间序列计算使我们能够找到满足各种启动要求(例如形成和维持磁场零位)的足够数量的KSTAR极场磁场线圈电流的合适波形进一步提高等离子体电流的磁通量,足够大的E_t·B_t /B_⊥> 1 kVm〜(11)轮廓以成功击穿,等离子体电流环形平衡等。除上述要求外,本结果介绍该报告还通过补偿源自铁磁效应的磁场变形,提供了等离子体电流通道对径向和垂直扰动的位置稳定性。随着位置稳定性的提高,在2010年KSTAR战役期间,在各种放电条件下(例如从等离子体破裂中恢复的过程中),实现了强大的等离子体启动。

著录项

  • 来源
    《Nuclear fusion》 |2011年第8期|p.333-341|共9页
  • 作者单位

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    General Atomics, PO Box 85608, San Diego, CA, 92186-5608, USA;

    General Atomics, PO Box 85608, San Diego, CA, 92186-5608, USA;

    Princeton Plasma Physics Laboratory, PO Box 451, Princeton, NJ, 08543, USA;

    Pohang University of Science and Technology, San 31, Hyoja-dong, Nam-gu, Pohang, Gyungbuk 790-784, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea<英作者单位十一>=National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea<英作者单位十二>=National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea<英作者单位十三>=National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

    National Fusion Research Institute, Gwahangno 113, Yusung-gu, Daejeon 305-333, Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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