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Collisionality driven turbulent particle transport changes in DIII-D H-mode plasmas

机译:DIII-D H模式等离子体中的碰撞性驱动湍流粒子传输变化

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摘要

The results of the experimental dimensionless scan in this paper confirm that there is an increase in density peaking towards lower collisionality and that this can be partly linked to a shift in the turbulence regime from ITG towards TEM. However at the lowest collisionality, the changes in turbulence and transport are much more pronounced than expected from direct collisionality effect on the turbulence. In this paper, the collisionality, v* is varied by a factor 5, while keeping ρ*, q, β, M, T_e/T_i fixed. Additionally, a 3 Hz gas puff modulation is applied to modulate the electron density profile and extract the perturbed transport coefficients using two diagnostics. The transport analysis shows that the increase in density peaking at low v* is linked to an increase in the inward particle pinch and not an increase in core fueling. These observations are not only in agreement with prior modeling scans of how turbulence changes as a function of collisionality and its impact upon the particle fluxes, but also with the multi-machine database (Fable E. et al 2010 Plasma Phys. Control. Fusion 52 015007) (Angioni C. et al 2003 Phys. Rev. Lett. 90 205003). The changes in turbulence across the collisionality scan were captured at large scale by the BES and at smaller scale by the DBS. A comparison with gradient-driven GENE simulations showed similar trends at both scales. Moreover, the changes observed in overall transport are in agreement with gradient-driven TGLF particle flux simulations. This indicates that TGLF/GENE when given the gradients as input, are able to reproduce the experimentally observed turbulence changes.
机译:本文实验无量纲扫描的结果证实,密度达到较低的撞击性的增加,并且这可以部分地与ITG朝向TEM的湍流状态的换档。然而,在收取最低的碰撞状态下,湍流和运输的变化比对湍流的直接碰撞效应从预期的预期更加明显。在本文中,收集性V *由因子5而变化,同时保持ρ*,q,β,m,t_e / t_i固定。另外,应用3 Hz气体粉扑调制来调节电子密度曲线,并使用两个诊断提取扰动的传输系数。运输分析表明,低V *密度峰值的增加与向内颗粒夹的增加而导致核心加油的增加。这些观察不仅与现有建模扫描的达成一致,这些扫描如何随着收集性的函数而变化以及其对粒子通量的影响,而且还与多机器数据库(Fable E.Et Al 2010等离子体物理。控制。融合52 015007)(Angioni C.等人2003 Phys。Rev. Lett。90 205003)。通过BES和DBS以小规模大规模捕获跨碰撞性扫描的湍流变化。与梯度驱动基因模拟的比较显示了两个尺度的相似趋势。此外,在整体运输中观察到的变化与梯度驱动的TGLF粒子通量模拟一致。这表明TGLF /基因在给予梯度作为输入时,能够再现实验观察到的湍流变化。

著录项

  • 来源
    《Nuclear fusion》 |2020年第6期|066019.1-066019.13|共13页
  • 作者单位

    Dept. of Physics College of William & Mary Williamsburg VA United States of America;

    Dept. of Physics and Astronomy Univ of California Los Angeles Los Angeles CA United States of America;

    Dept. of Physics and Astronomy Univ of California Los Angeles Los Angeles CA United States of America;

    VTT Technical Research Centre of Finland PO Box 1000 FI-02044 VTT Espoo Finland;

    VTT Technical Research Centre of Finland PO Box 1000 FI-02044 VTT Espoo Finland;

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

    University of Wisconsin Madison Madison WI 53706 United States of America;

    Dept. of Physics College of William & Mary Williamsburg VA United States of America;

    Chalmers University of Technology Gothenburg Sweden;

    Chalmers University of Technology Gothenburg Sweden;

    Chalmers University of Technology Gothenburg Sweden;

  • 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

    transport; tokamak; turbulence; collisionality;

    机译:运输;Tokamak;湍流;罚球性;

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