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A reduced Landau-gyrofluid model for magnetic reconnection driven by electron inertia

机译:电子惯性驱动的磁性重新连接的降低的Landau-陀螺体模型

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摘要

An electromagnetic reduced gyrofluid model for collisionless plasmas, accounting for electron inertia, finite ion Larmor radius effects and Landau-fluid closures for the electron fluid is derived by means of an asymptotic expansion from a parent gyrofluid model. In the absence of terms accounting for Landau damping, the model is shown to possess a non-canonical Hamiltonian structure. The corresponding Casimir invariants are derived and use is made thereof, in order to obtain a set of normal field variables, in terms of which the Poisson bracket and the model equations take a remarkably simple form. The inclusion of perpendicular temperature fluctuations generalizes previous Hamiltonian reduced fluid models and, in particular, the presence of ion perpendicular gyrofluid temperature fluctuations reflects into the presence of two new Lagrangian invariants governing the ion dynamics. The model is applied, in the cold-ion limit, to investigate numerically a magnetic reconnection problem. The Landau damping terms are shown to reduce, by decreasing the electron temperature fluctuations, the linear reconnection rate and to delay the nonlinear island growth. The saturated island width, on the other hand, is independent of Landau damping. The fraction of magnetic energy converted into perpendicular kinetic energy also appears to be unaffected by the Landau damping terms, which, on the other hand, dissipate parallel kinetic energy as well as free energy due to density and electron temperature fluctuations.
机译:通过来自母体陀螺流体模型的渐近膨胀来源的,通过来自母体葡萄球菌模型的渐近膨胀来源的电磁等离子体的电磁减少的粘性等离子体,用于电子流体的有限离子大气效应和Landau - 流体闭合。在没有符合Landau阻尼的术语的情况下,该模型被证明具有非规范哈密顿结构。导出并使用相应的Casimir不变性,以便获得一组正常场变量,从那么泊松支架和模型方程采用显着简单的形式。包含垂直温度波动概括了先前的哈密顿减少的流体模型,特别是,离子垂直陀螺流体温度波动的存在反映了两个新的拉格朗日不变性的存在控制离子动力学。在冷离子极限中应用模型,以进行数值磁重构问题。通过降低电子温度波动,线性重构率和延迟非线性岛生长,兰开陀阻尼术语显示为减少。另一方面,饱和岛宽度独立于Landau阻尼。转换成垂直动能的磁能的分数也似乎不受Landau阻尼术语的影响,另一方面,由于密度和电子温度波动而散发平行动能以及自由能。

著录项

  • 来源
    《Journal of Plasma Physics》 |2018年第4期|共28页
  • 作者单位

    Univ Toulon &

    Var Aix Marseille Univ CNRS CPT F-13288 Marseille France;

    CNR Ist Sistemi Complessi I-10129 Turin Italy;

    Politecn Torino Dipartimento Energia I-10129 Turin Italy;

    Universite Cote Azur CNRS Observ Cote Azur Lab JL Lagrange Blvd Observ CS 34229 F-06304 Nice 4 France;

    Universite Cote Azur CNRS Observ Cote Azur Lab JL Lagrange Blvd Observ CS 34229 F-06304 Nice 4 France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

    plasma nonlinear phenomena;

    机译:等离子体非线性现象;

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