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Plasma heating effects on divertor flow vertical asymmetries in the Uragan-3M torsatron

机译:等离子体加热对Uragan-3M陀螺加速器中偏滤器流动垂直不对称的影响

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摘要

In the l = 3/m = 9 Uragan-3M (U-3M) torsatron (R_0 = 1 m, a-bar ≈ 12 m, B_φ = 0.7 T, l(a-bar)/2π ≈ 0.4), an open helical divertor has been realized. Recently, under RF plasma production and heating conditions, a strong up-down asymmetry of diverted plasma flow has been observed as a result of measurements of distributions of this flow in two symmetric poloidal cross-sections of the U-3M torus. In many aspects, this asymmetry is similar to that observed in the l = 2 Heliotron E (H-E) heliotron/torsatron under neutral beam injection and electron cyclotron heating conditions. The main feature of the asymmetry is a predominant outflow of the diverted plasma in the ion toroidal drift direction. On this basis, the asymmetry can be related to non-uniformity of the distribution of direct charged particle losses in the minor azimuth. In the work reported, the magnitude of diverted plasma flow in U-3M and the degree of its vertical asymmetry are studied as functions of the heating parameter P-bar_e, P being the RF power absorbed in the plasma, and are juxtaposed with corresponding P-related changes in the density, n-bar_e, and suprathemal ion content in the plasma. As the heating power increases, both the temperature of the main ion group and the relative content of suprathermal ions increase. At the same time, a decrease in plasma density is observed. evidencing a rise of particle loss. The rise of particle loss with heating could result from both a shift of diffusion regime towards a lower collisionality and a rise of direct (non-diffusive) loss of high-energy particles. Outside the confinement volume, the total flow of diverted plasma increases together with an increase of vertical flow asymmetry towards the ion toroidal drift side. Such a mutual accordance between the processes in the confinement volume and in the divertor region validates the hypothesis on a dominating role of fast particle loss in the formation of vertical asymmetry of divertor flow in U-3M. In conclusion, the results obtained on U-3M are compared with those from similar research on H-E.
机译:在l = 3 / m = 9 Uragan-3M(U-3M)旋风加速器中(R_0 = 1 m,a-bar≈12 m,B_φ= 0.7 T,l(a-bar)/2π≈0.4)螺旋形偏滤器已经实现。近来,在RF等离子体产生和加热条件下,由于测量了U-3M圆环的两个对称极向截面中的这种流动的分布,因此观察到了强烈的等离子体流动的上下不对称性。在许多方面,这种不对称性与在中性束注入和电子回旋加速器加热条件下在1 = 2 Heliotron E(H-E)的Heliotron / torsatron中观察到的相似。不对称的主要特征是转向等离子体在离子环形漂移方向上主要流出。在此基础上,不对称性可能与小方位上直接带电粒子损失的分布不均匀有关。在报告的工作中,研究了U-3M中转移的等离子体流的大小及其垂直不对称程度与加热参数P / n-bar_e的关系,P是等离子体中吸收的RF功率,并与血浆中密度,n-bar_e和超热离子含量的相应P相关变化。随着加热功率的增加,主离子基团的温度和超热离子的相对含量都增加。同时,观察到血浆密度降低。证明颗粒损失增加。伴随加热的颗粒损失的增加可能是由于扩散态势向较低碰撞性的转移以及高能颗粒的直接(非扩散)损失的增加所致。在限制体积之外,转向等离子体的总流量随着朝向离子环形漂移侧的垂直流不对称性的增加而增加。约束空间中和分流器区域中的过程之间的这种相互一致,证实了关于快速颗粒损失在U-3M中分流器流动的垂直不对称形成中起主导作用的假设。总之,将在U-3M上获得的结果与在H-E上进行的类似研究相比较。

著录项

  • 来源
    《Nuclear fusion》 |2003年第10期|p. 1175-1182|共8页
  • 作者单位

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

    Institute of Plasma Physics of National Science Center, Kharkov Institute of Physics and Technology, Kharkov, Ukraine;

  • 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 原子核物理学、高能物理学;
  • 关键词

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