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强平均磁场中磁流体动力学湍流的尺度与各向异性

Scaling and anisotropy in magnetohydrodynamic turbulence in a strong mean magnetic field.

作者信息

Grappin Roland, Müller Wolf-Christian

机构信息

Observatoire de Paris, F-92915 Meudon, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2010 Aug;82(2 Pt 2):026406. doi: 10.1103/PhysRevE.82.026406. Epub 2010 Aug 20.

Abstract

We present an analysis of the anisotropic spectral energy distribution in incompressible magnetohydrodynamic turbulence permeated by a strong mean magnetic field. The turbulent flow is generated by high-resolution pseudospectral direct numerical simulations with large-scale isotropic forcing. Examining the radial energy distribution for various angles θ with respect to B0 reveals a specific structure which remains hidden when not taking axial symmetry with respect to B0 into account. For each direction, starting at the forced large scales, the spectrum first exhibits an amplitude drop around a wave number k0 which marks the start of a scaling range and goes on up to a dissipative wave number k(d)(θ). The three-dimensional spectrum for k≥k0 is described by a single θ-independent functional form F(k/k(d)), with the scaling law being the same in every direction. The previous properties still hold when increasing the mean field from B0=5 up to B0=10b(rms), as well as when passing from resistive to ideal flows. We conjecture that at fixed B0 the direction-independent scaling regime is reached when increasing the Reynolds number above a threshold which raises with increasing B0. Below that threshold critically balanced turbulence is expected.

摘要

我们对由强平均磁场渗透的不可压缩磁流体动力学湍流中的各向异性光谱能量分布进行了分析。湍流是通过具有大尺度各向同性强迫的高分辨率伪谱直接数值模拟产生的。检查相对于B0的不同角度θ的径向能量分布,揭示了一种特定结构,当不考虑相对于B0的轴对称性时,该结构仍然隐藏。对于每个方向,从强迫大尺度开始,光谱首先在波数k0附近呈现幅度下降,k0标志着标度范围的开始,并一直持续到耗散波数k(d)(θ)。对于k≥k0的三维光谱,由单个与θ无关的函数形式F(k/k(d))描述,每个方向的标度律相同。当平均场从B0 = 5增加到B0 = 10b(rms)时,以及从电阻流过渡到理想流时,先前的性质仍然成立。我们推测,在固定的B0下,当雷诺数增加到高于随B0增加而升高的阈值时,会达到与方向无关的标度区域。低于该阈值,预计会出现临界平衡湍流。

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