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Energy cascade rate in isothermal compressible magnetohydrodynamic turbulence

机译:等温可压缩磁力流体动力学湍流中的能量级联速率

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摘要

Three-dimensional direct numerical simulations are used to study the energy cascade rate in isothermal compressible magnetohydrodynamic turbulence. Our analysis is guided by a two-point exact law derived recently for this problem in which flux, source, hybrid and mixed terms are present. The relative importance of each term is studied for different initial subsonic Mach numbers M-S and different magnetic guide fields B-0. The dominant contribution to the energy cascade rate comes from the compressible flux, which depends weakly on the magnetic guide field B-0, unlike the other terms whose moduli increase significantly with M s and B-0. In particular, for strong B-0 the source and hybrid terms are dominant at small scales with almost the same amplitude but with a different sign. A statistical analysis undertaken with an isotropic decomposition based on the SO(3) rotation group is shown to generate spurious results in the presence of B-0, when compared with an axisymmetric decomposition better suited to the geometry of the problem. Our numerical results are compared with previous analyses made with in situ measurements in the solar wind and the terrestrial magnetosheath.
机译:三维直接数值模拟用于研究等温可压缩磁力流体动力学湍流中的能量级联速率。我们的分析是由最近导出的两点确切的法律指导,其中存在助焊剂,源,混合和混合术语。为不同的初始亚源马赫数M-S和不同的磁导田B-0研究了每个术语的相对重要性。与MS和B-0显着增加的其他术语不同,对能量级联速率的主导贡献来自可压缩磁通量在磁导场B-0上弱,这不同。特别是,对于强烈的B-0,源和混合术语在小刻度下占主导地位,具有几乎相同的幅度,但具有不同的标志。基于所以(3)旋转组的各向同性分解进行的统计分析显示在B-0存在下产生虚假的结果,与问题的几何形状更好地相比,在B-0的存在下。我们的数值结果与在太阳风中的原位测量中进行的先前分析进行了比较。

著录项

  • 来源
    《Journal of Plasma Physics》 |2018年第4期|共21页
  • 作者单位

    Univ Paris Sud Sorbonne Univ Lab Phys Plasmas CNRS Ecole Polytech Observ Paris F-91128 Palaiseau France;

    Univ Paris Sud Sorbonne Univ Lab Phys Plasmas CNRS Ecole Polytech Observ Paris F-91128 Palaiseau France;

    Univ Paris Sud Sorbonne Univ Lab Phys Plasmas CNRS Ecole Polytech Observ Paris F-91128 Palaiseau France;

    Swedish Inst Space Phys Uppsala Sweden;

    UBA CONICET Inst Fis Buenos Aires Ciudad Univ RA-1428 Buenos Aires DF Argentina;

    Univ Buenos Aires Fac Ciencias Exactas &

    Nat Dept Fis Ciudad Univ RA-1428 Buenos Aires DF Argentina;

  • 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; plasma simulation; space plasma physics;

    机译:等离子体非线性现象;等离子体模拟;空间等离子体物理学;

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