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Exact conservative solutions of fluid models for the scrape-off layer as the ancestors of plasma blobs?

机译:作为等离子斑点祖先的可刮除层的流体模型的精确保守解?

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摘要

New exact, analytical solutions are presented for the conservative part of a standard two-fluid (density plus vorticity) model of the scrape-off layer (SOL) which are of the travelling-wave type and describe the transport of large, machine-scale structures across a plasma cross-section (radially and/or poloidally). It is conjectured that amongst these conservative solutions (some extended throughout space, others much more localised) might be the ancestors of propagating coherent structures, known as blobs, often seen in experiments and numerical simulations of SOL turbulence. Several types of solutions can be obtained, capable of mimicking not only high-density blobs propagating outwards, but also inwardly moving plasma holes (structures with densities lower than the backrgound?s). Besides their fundamental interest as conservative solutions of the equations describing SOL turbulence, these exact solutions have the added value of providing benchmarks for the verification of numerical algorithms, as is here illustrated. Having thus verified one?s numerical implementation, a more realistic SOL model (including diffusion, parallel losses and a source of core plasma) is solved (by gradually adding the extra terms to the conservative part) to check whether these conservative solutions survive the full dynamics or not. They actually do survive (albeit enduring some degree of distortion, ending up by being eventually lost) for parameters representative of SOL plasmas in present-day fusion devices, thus somewhat vindicating one?s original conjecture that they might be the ancestors of blobs. In addition, being actual solutions of the conservative part of the fluid SOL equations (and with the possibility of taking essentially Gaussian forms), there is no need to further justify their use as seeds with which to initialise (so-called seeded) simulations. A further characteristic that these Gaussian, blob-like conservative solutions possess is that they have intrinsic net vorticity (or spin), which is also believed to be the case for turbulence-created blobs.
机译:针对行波类型的刮擦层(SOL)的标准两流体模型(密度加涡度)的保守部分,提供了新的精确分析解决方案,它们描述了大型机器规模的传输等离子体横截面(径向和/或极向)上的结构。据推测,在这些保守的解决方案中(有些扩展到整个空间,有些扩展到更局部),可能是传播相干结构(称为斑点)的祖先,通常在SOL湍流的实验和数值模拟中看到。可以得到几种类型的解决方案,它们不仅可以模仿向外传播的高密度斑点,还可以模仿向内移动的等离子孔(密度低于backrgound?s的结构)。除了作为描述SOL湍流方程的保守解的基本兴趣外,这些精确的解决方案还具有为数值算法验证提供基准的附加价值,如下所示。从而验证了自己的数值实现,从而解决了更实际的SOL模型(包括扩散,并行损耗和核心等离子体源)(通过将额外的项逐渐添加到保守部分)来检查这些保守的解决方案是否在完整的条件下仍然有效动态与否。它们实际上确实可以生存(尽管经受了一定程度的变形,最终由于最终丢失而消失了),代表了当今聚变设备中SOL等离子体的参数,因此在某种程度上证明了人们最初的推测,他们可能是斑点的祖先。另外,由于是流体SOL方程保守部分的实际解决方案(并且有可能采用基本的高斯形式),因此无需进一步证明将其用作初始化(所谓的种子化)模拟的种子是合理的。这些高斯,斑点状保守解所具有的另一个特征是,它们具有固有的净涡度(或自旋),这也被认为是湍流产生的斑点的情况。

著录项

  • 来源
    《Nuclear fusion》 |2020年第1期|016012.1-016012.18|共18页
  • 作者

  • 作者单位

    Univ Lisbon Inst Plasmas & Fusao Nucl Inst Super Tecn P-1049001 Lisbon Portugal;

  • 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

    plasma blobs; scrape-off layer; tokamaks; two-field model;

    机译:血浆斑点刮除层;托卡马克两场模型;
  • 入库时间 2022-08-18 05:21:30

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