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Modeling of the ECCD injection effect on the Heliotron J and LHD plasma stability

机译:ECCD注射效果对Heliotron J和LHD等离子稳定性的建模

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摘要

The aim of the study is to analyze the stability of the energetic particle modes (EPM) and Alfven Eigenmodes (AE) in Helitron J and LHD plasma if the electron cyclotron current drive (ECCD) is applied. The analysis is performed using the code FAR3d that solves the reduced MHD equations describing 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 particle (EP) species, including the effect of the acoustic modes. The Landau damping and resonant destabilization effects are added via the closure relation. The simulation results show that the n - 1 EPM and n = 2 global AE (GAE) in Heliotron J plasma can be stabilized if the magnetic shear is enhanced at the plasma periphery by an increase (co-ECCD injection) or decrease (ctr-ECCD injection) of the rotational transform at the magnetic axis (t_0). In the ctr-ECCD simulations, the EPM/AE growth rate decreases only below a given t_0, similar to the ECCD intensity threshold observed in the experiments. In addition, ctr-ECCD simulations show an enhancement of the continuum damping. The simulations of the LHD discharges with ctr-ECCD injection indicate the stabilization of the n = 1 EPM, n = 2 toroidal AE (TAE) and n = 3 TAE, caused by an enhancement of the continuum damping in the inner plasma leading to a higher EP (3 threshold with respect to the co- and no-ECCD simulations.
机译:该研究的目的是分析Helitron J和LHD等离子体中的能量颗粒模式(EPM)和Alfven特征模(AE)的稳定性,如果施加电子回旋电流驱动器(ECCD)。使用代码FAR3D进行分析,该码FAR3D解决了描述了整个3D系统中涡流的线性进化的减少的MHD方程,与能量粒子的密度和平行速度时刻的方程联接(EP )物种,包括声学模式的效果。通过闭合关系添加Landau阻尼和共振稳定性效果。仿真结果表明,如果通过增加(CO-ECCD注射)或减少(CTR-),可以稳定N-1 EPM和N = 2全局AE(GAE)。如果通过增加(CO-ECCD)或减少(CTR-),可以稳定在等离子体周边的磁剪切(CTR-磁轴(T_0)处的旋转变换的ECCD喷射。在CTR-ECCD模拟中,EPM / AE生长速率仅降低到给定的T_0以下,类似于实验中观察到的ECCD强度阈值。此外,CTR-ECCD模拟显示了连续泵的增强。通过CTR-ECCD注射的LHD放电的模拟表明,由内部等离子体中的连续抑制导致A的连续脉冲的增强引起的稳定性,N = 1 EPM,N = 2环形AE(TAE)和N = 3 TAE的稳定性更高的EP(相对于CO-NO-ECCD模拟3个阈值。

著录项

  • 来源
    《Nuclear fusion》 |2020年第11期|112015.1-112015.9|共9页
  • 作者单位

    National Institute for Fusion Science National Institute of Natural Science Toki 509-5292 Japan Universidad Carlos III de Madrid 28911 Leganes Madrid Spain;

    Institute of Advanced Energy Kyoto University Uji Japan;

    National Institute for Fusion Science National Institute of Natural Science Toki 509-5292 Japan Graduate School of Science Nagoya University Nagoya 464-8602 Japan;

    National Institute for Fusion Science National Institute of Natural Science Toki 509-5292 Japan;

    National Institute for Fusion Science National Institute of Natural Science Toki 509-5292 Japan;

    Oak Ridge National Laboratory Oak Ridge Tennessee 37831-8071 United States of America;

    Universidad Carlos III de Madrid 28911 Leganes Madrid Spain;

    Laboratorio Nacional de Fusion CIEMAT Madrid Spain;

    Graduate School of Science Nagoya University Nagoya 464-8602 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

    stellarator; LHD; MHD; AE; energetic particles;

    机译:螺旋桨;LHD;MHD;AE;精力充沛的粒子;

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