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Towards validated MHD modeling of edge harmonic oscillation in DIII-D QH-mode discharges

机译:探讨DIII-D QH模式放电中边缘谐波振荡的验证MHD建模

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摘要

The extended-MHD NIMROD code (Sovinec C.R. and King J.R. 2010 J. Comput. Phys. 229 5803) is used to simulate the dynamics of an edge harmonic oscillation (EHO) in quiescent H-mode (QH-mode) DIII-D (Luxon J.L. 2002 Nucl. Fusion 42 614) discharge 163 518. EHOs observed in non-linear MHD simulations have n = 1 and n = 2 as dominant modes akin the DIII-D experiment. Kinetic equilibrium reconstructions during the time of the fully-developed EHO include the effect of the MHD profile relaxation and are found below the stability boundary. This paper discusses methods to include additional instability drives to the experimental equilibria in order to trigger EHO formation. The experimental equilibrium for the DIII-D discharge 163 518 is modified to include two levels of instability drive by increasing the experimental pressure gradient. In order to do a more direct comparison of the simulation results with the experiment, a synthetic BES diagnostic is used to compute cross-correlation and cross-power spectral densities associated with the simulated density perturbations. It is shown that the amplitude of the experimental density perturbations is between the computed density perturbation amplitude for the two levels of instability drive. The synthetic cross-power spectral density shows a transition from a double to a single peak in frequency when the BES analysis shifts from near the LCFS towards the steep gradient region of the pedestal. This observation is similar to the experiment, but the first peak frequency for the weak instability drive is found below the experimental frequencies, and the second peak for the strong instability drive is found above the experimental peak frequencies. However, these peak frequencies are in agreement with the local flow estimate and a MHD turbulence bursty behavior in the simulations with the strong instability drive.
机译:扩展-MHD NIMROD码(Sovinec CR和King JR 2010 J. Comput。Physm.229 5803)用于模拟静态H模式(QH-MODE)DIII-D中边缘谐波振荡(EHO)的动态(EHO)( Luxon JL 2002 Nucl。Fusion 42 614)排放163 518.在非线性MHD模拟中观察到的EHOS具有n = 1和n = 2,作为主导模式类似于DIII-D实验。完全开发的EHO期间的动力学平衡重建包括MHD轮廓松弛的效果,并且在稳定边界下方发现。本文讨论了将额外的不稳定性驱动到实验均衡的方法,以触发eho形成。通过增加实验压力梯度,改变用于DIII-D放电163 518的实验性平衡以包括两个水平的不稳定性驱动。为了通过实验进行模拟结果的更直接比较,使用合成的BES诊断来计算与模拟密度扰动相关的互相关和交叉功率谱密度。结果表明,实验密度扰动的幅度在两个级别的不稳定驱动器的计算密度扰动幅度之间。合成交叉功率谱浓度显示在BES分析从LCFS朝向基座的陡峭梯度区域偏移时从频率的双达峰值的转变。该观察类似于实验,但是在实验频率下方发现弱不稳定驱动器的第一峰值频率,并且在实验峰频率上方发现了强不稳定驱动器的第二峰。然而,这些峰值频率与局部流量估计和模拟中的MHD湍流突发行为一致,具有强不稳定的驱动器。

著录项

  • 来源
    《Nuclear fusion》 |2020年第9期|092004.1-092004.15|共15页
  • 作者单位

    Tech-X Corporation 5621 Arapahoe Ave. Boulder CO 80303 United States of America;

    Tech-X Corporation 5621 Arapahoe Ave. Boulder CO 80303 United States of America;

    Tech-X Corporation 5621 Arapahoe Ave. Boulder CO 80303 United States of America;

    General Atomics PO Box 85 608 San Diego CA 92186-5608 United States of America;

    General Atomics PO Box 85 608 San Diego CA 92186-5608 United States of America;

    General Atomics PO Box 85 608 San Diego CA 92186-5608 United States of America;

    General Atomics PO Box 85 608 San Diego CA 92186-5608 United States of America;

    Department of Engineering Physics University of Wisconsin-Madison Madison WI 53706-1687 United States of America;

    Department of Engineering Physics University of Wisconsin-Madison Madison WI 53706-1687 United States of America;

  • 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

    edge harmonic oscillations; EHO; extended-MHD modeling; quiescent H-mode; tokamak; pedestal;

    机译:边缘谐波振荡;EHO;扩展-MHD建模;静态H模式;Tokamak;座;

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