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Effect of Electrode Biasing on the Radial Electric Field Structure Bifurcation in Tokamak Plasmas

机译:电极偏压对托卡马克等离子体中径向电场结构分叉的影响

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摘要

The mechanism for formation of a steep structure in the radial electric field is a key issue in plasma confinement. Properties of the radial electric field bifurcation are studied taking into account the effect of electrode biasing. The radial electric field structure is determined by the charge conservation equation. From the nonlinear mechanism associated with local current due to ion bulk viscosity, a transition can take place. Various types of radial electric field structures with multiple peaks are allowed for the same boundary condition. The ion orbit loss term breaks the symmetry of the radial current similarly to the ambipolar radial electric field. A radial current driven by the electrode plays the role of a control parameter in a transition similarly to the pressure gradient. A phase diagram is given in the spontaneous drive vs. external drive space. Differences in the radial shape of solitary electric field structures are demonstrated in the presence of spatial varying components. This study clarifies the mechanisms of nonlinear structure formation in transport barriers.
机译:在径向电场中形成陡峭结构的机制是等离子体限制中的关键问题。考虑到电极偏置的影响,研究了径向电场分叉的特性。径向电场结构由电荷守恒方程确定。从离子体积粘度引起的与局部电流相关的非线性机制中,可以发生过渡。对于相同的边界条件,允许使用具有多个峰值的各种类型的径向电场结构。离子轨道损失项类似于双极性径向电场,破坏了径向电流的对称性。由电极驱动的径向电流在过渡过程中起着与压力梯度相似的控制参数的作用。在自发驱动器空间与外部驱动器空间中给出了一个相位图。在存在空间变化的分量的情况下,证明了孤立电场结构的径向形状的差异。这项研究阐明了运输壁垒中非线性结构形成的机理。

著录项

  • 作者

    N. Kasuya; K. Itoh; Y. Takase;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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