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Near-singular equilibrium currents near magnetic islands with broken symmetry

机译:磁岛附近的近奇异平衡电流破损对称性

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摘要

The conventional cylindrical analytical model of a magnetic island is symmetric with respect to combined reflection in the poloidal and toroidal angles, a symmetry property sometimes called 'stellarator symmetry'. There are cancellations in the pressure driven currents when an island is stellarator symmetric that are not there when the symmetry is broken. When the symmetry is broken, new aspects of the island physics emerge. The diamagnetic current driven by the scalar pressure is no longer ambipolar. The pressure-driven current generally has a logarithmic (integrable) singularity at the island separatrix. These effects manifest themselves when taking into account incomplete flattening of the pressure along magnetic field lines. A small magnetic island has only a small effect on the ambient pressure gradient, so that the pressure is not constant on the flux surfaces near the island. For larger islands, this behavior persists near the X-lines. The equilibrium solutions with a small island are to be compared with three-dimensional magnetohydrodynamic equilibrium solutions that are constrained to have simply nested flux surfaces, where the pressure-driven current goes like 1/x near rational surfaces, where x is the distance from the rational surface. This paper presents an investigation of the pressure driven current near a small magnetic island in a cylindrical magnetic field with perturbed circular flux surfaces. The conventional analytical cylindrical model of a field with a magnetic island is augmented with a resonant component that breaks the stellarator symmetry without breaking the flux surfaces. The effects of stellarator symmetry on magnetic islands in tokamaks are of particular interest in the context of the stabilization of edge localized modes by resonant magnetic perturbations. In stellarators, the design studies for the major contemporary devices have discarded half the design parameters available for optimization at the outset by assuming stellarator symmetry.
机译:磁岛的传统圆柱分析模型相对于针状体和环形角度的组合反射是对称的,一种有时称为“螺筋管对称”的对称性。当岛是颗粒是对称性时,在压力驱动的电流中取消了取消,当对称性被打破时不存在。当对称性被破坏时,岛物理的新方面出现了。由标量压力驱动的抗磁电流不再是Ambolar。压力驱动电流通常在岛屿分离器处具有对数(可集成的)奇异性。当考虑沿磁场线的压力不完全平坦时,这些效果表现出来。小磁岛对环境压力梯度仅有很小的影响,因此压力在岛附近的磁通表面上不恒定。对于较大的岛屿,这种行为在X线附近持续存在。与小岛的平衡溶液与三维磁流动正动平衡溶液进行比较,该磁性动力学平衡溶液被限制为具有简单的嵌套磁通表面,其中压力驱动电流像1 / x接近合理表面一样,其中x是距离的距离理性的表面。本文介绍了具有扰动圆形通量表面的圆柱磁场中的小磁岛附近的压力驱动电流的研究。具有磁岛的场的传统分析圆柱模型用谐振部件增强,该谐振分量在不破坏磁通表面的情况下破坏螺栓对称性。通过共振磁扰动稳定边缘局部模式的稳定性背景,牙齿对称对托卡马克的磁岛的影响特别感兴趣。在螺栓恒液中,通过假设螺旋液对称,主要的当代器件的设计研究丢弃了最初优化的设计参数的一半。

著录项

  • 来源
    《Nuclear fusion》 |2019年第5期|056016.1-056016.11|共11页
  • 作者

    Reiman A. H.; Radhakrishnan D.;

  • 作者单位

    Princeton Univ Princeton Plasma Phys Lab Princeton NJ 08544 USA;

    NYU New York NY 10003 USA;

  • 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

    magnetic islands; RMP ELM suppression; stellarator optimization;

    机译:磁岛;RMP ELM抑制;螺栓仪优化;
  • 入库时间 2022-08-18 21:19:02

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