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Analysis of the MHD stability and energetic particles effects on EIC events in LHD plasma using a Landau-closure model

机译:使用Landau封闭模型分析MHD稳定性和高能粒子对LHD血浆EIC事件的影响

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摘要

The aim of this study is to perform a theoretical analysis of the magnetohydrodynamic (MHD) stability and energetic particle effects on a LHD equilibria, calculated during a discharge where energetic-ion-driven resistive interchange mode (EIC) events were triggered. We use the reduced MHD equations to describe the linear evolution of the poloidal flux and the toroidal component of the vorticity in a full 3D system, coupled with equations of density and parallel velocity moments for the energetic particles species, including the effect of the acoustic modes, multiple energetic particles (EP) species, helical couplings and helically trapped EP. We add the Landau damping and resonant destabilization effects using a closure relation. The simulations suggest that the helically trapped EP driven by the perpendicular neutral beam injector (NBI) further destabilizes the 1/1 MHD-like mode located at the plasma periphery (r/a = 0.88). If the beta of the EP driven by the perpendicular NBI is larger than 0.0025 a 1/1 EIC with a frequency around 3 kHz is destabilized. If the effect of the passing EP driven by the tangential NBI is included on the model, any enhancement of the injection intensity of the tangential NBI below beta = 0.025 leads to a decrease of the instability growth rate. The simulations indicate that the perpendicular NBI EP is the main driver of the EIC events, as it was observed in the experiment. If the effect of the helical couplings are added in the model, an 11/13 EIC is destabilized with a frequency around 9 kHz, inward shifted (r/a = 0.81) compared to the 1/1 EIC. Thus, one possible explanation for the EIC frequency chirping down from 9 to 3kHz is a transition between the 11/13 to the 1/1 EIC due to a weakening of the destabilizing effect of the high n modes, caused by a decrease of the EP drive due to a loss of helically trapped EP or a change in the EP distribution function after the EIC burst. The experimental data during the EIC bursting phase shows a complex mode structure and an inward shift of the instability, although no direct evidence of the proposed transition has been observed yet.
机译:这项研究的目的是对磁流体动力学(MHD)稳定性和高能粒子对LHD平衡的影响进行理论分析,该计算是在放电过程中计算得出的,该放电是由高能离子驱动的电阻交换模式(EIC)事件触发的。我们使用简化的MHD方程来描述完整3D系统中的极性通量和涡旋的环形分量的线性演变,以及高能粒子的密度和平行速度矩方程,包括声学模式的影响,多种高能粒子(EP),螺旋耦合和螺旋捕获的EP。我们使用闭合关系添加了Landau阻尼和共振去稳定效应。该模拟表明,由垂直中性束注入器(NBI)驱动的螺旋捕获的EP进一步破坏了位于等离子体外围的1/1 MHD样模式的稳定性(r / a = 0.88)。如果由垂直NBI驱动的EP的beta大于0.0025,则频率约为3 kHz的1/1 EIC不稳定。如果模型中包含由切向NBI驱动的通过EP的影响,则切向NBI的注入强度在β= 0.025以下的任何增强都会导致不稳定性增长率的降低。仿真表明,垂直NBI EP是EIC事件的主要驱动因素,正如在实验中观察到的那样。如果在模型中增加了螺旋耦合的影响,则11/13 EIC的频率约为9 kHz时不稳定,与1/1 EIC相比向内移动(r / a = 0.81)。因此,对于EIC频率从9kHz降低到3kHz的一种可能解释是,由于EP的减小导致高n模的去稳定作用减弱,导致EIC频率从11/13过渡到1/1。 EIC突发后,由于螺旋捕获的EP的丢失或EP分布函数的变化而导致驱动器驱动。 EIC爆发阶段的实验数据显示了复杂的模式结构和不稳定性的向内移动,尽管尚未观察到提议的过渡的直接证据。

著录项

  • 来源
    《Nuclear fusion》 |2019年第4期|046008.1-046008.11|共11页
  • 作者单位

    Natl Inst Nat Sci, Natl Inst Fus Sci, Toki, Gifu 5095292, Japan;

    Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA;

    Univ Carlos III Madrid, Madrid 28911, Spain;

    Natl Inst Nat Sci, Natl Inst Fus Sci, Toki, Gifu 5095292, Japan;

    Natl Inst Nat Sci, Natl Inst Fus Sci, Toki, Gifu 5095292, Japan;

    Natl Inst Nat Sci, Natl Inst Fus Sci, Toki, Gifu 5095292, Japan|SOKENDAI, Dept Fus Sci, Toki, Gifu, Japan;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    EIC; energetic particles; LHD; plasma stability;

    机译:EIC;高能粒子;LHD;血浆稳定性;
  • 入库时间 2022-08-18 04:20:08

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