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Study of ergodic divertor edge density regimes on the tokamaks Tore Supra and TEXTOR, and sensitivity of tunnel probe electron temperature measurements to a suprathermal electron component

机译:托卡马克Tore supra和TEXTOR的遍历偏滤器边缘密度方案的研究,以及隧道探测电子温度测量对超热电子成分的敏感性

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摘要

Controlled thermonuclear fusion offers one possible option to meet our future energy needs in a sustainable way. Magnetic confinement in a so-called 'tokamak'-machine is a possible approach towards the achievement of a burning plasma. An important issue in this tokamak research is the transition of the plasma edge to the inner wall.A first topic that is addressed in this thesis, is the ergodic divertor (ED) configuration. An ED achieves the transition between the confined plasma and the wall in a layer where the flux lines have been ergodized by a proper resonant magnetic perturbation. The connection between up- and downstream plasma parameters during ED operation in the tokamaks Tore Supra en TEXTOR has been investigated experimentally by means of Langmuir probes.As an important first step in the theoretical interpretation of those experiments, a Hamiltonian field line mapping code, which had been previously developed for the TEXTOR dynamic ergodic divertor, has been adapted to the geometry of the Tore Supra ED. Subsequently, this adapted code has been used to study some of the properties of the Tore Supra ED magnetic field line structure, as well as to make a qualitative comparison of the sensitivity of the TEXTOR and Tore Supra ergodic divertor magnetic topology to changes in the central density.A second topic of this thesis concerns certain interpretation issues regarding the current-voltage characteristics obtained by a newly developed type of Langmuir probe for the investigation of edge plasmas. More in particular, the sensitivity of the TP to a small population of nonthermal electrons has been investigated in addition to the influence of suprathermal electrons on the scaling and structure of the Debye and the magnetic sheath at the inside of the tunnel probe.
机译:可控的热核聚变提供了一种可能的选择,以可持续的方式满足我们未来的能源需求。在所谓的“托卡马克”机中进行电磁限制是实现燃烧等离子体的一种可能方法。托卡马克研究中的一个重要问题是等离子边缘向内壁的过渡。本论文研究的第一个主题是遍历散布器(ED)的配置。 ED实现了受限等离子体与壁之间的过渡,在该层中,通量线已通过适当的共振磁扰动而被磁化。已通过Langmuir探针对托卡马克(Tokamaks Tore Supra en TEXTOR)在ED操作过程中上,下游血浆参数之间的联系进行了实验研究,作为对这些实验进行理论解释的重要的第一步,哈密顿场线映射代码以前是为TEXTOR动态遍历偏滤器开发的,已经适应了Tore Supra ED的几何形状。随后,该修改后的代码已被用于研究Tore Supra ED磁场线结构的某些特性,并对TEXTOR和Tore Supra遍历遍历偏磁器磁拓扑对中心变化的敏感性进行了定性比较。本论文的第二个主题涉及某些有关解释问题的解释问题,这些解释问题是由一种新型的Langmuir探针用于研究边缘等离子体而获得的电流-电压特性。更特别地,除了超热电子对隧道探针内部的德拜和磁鞘的结垢和结构的影响之外,还研究了TP对少量非热电子的敏感性。

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    Van Rompuy Thibaut;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 eng
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