论文标题
三维不可压缩的磁流体动力湍流中各向异性和时标的详细检查
A Detailed Examination of Anisotropy and Timescales in Three-dimensional Incompressible Magnetohydrodynamic Turbulence
论文作者
论文摘要
当磁水动力学湍流在存在大规模平均磁场的情况下演变时,各向异性相对于首选方向而发展。众所周知的趋势是相对于沿场的方向发展垂直于磁场的更强梯度。这种光谱的各向异性与用于动态过程的估计时间表的各向异性密切相关,并需要重新考虑基本问题,例如量表位置和光谱传递。这里的分析对未强制磁流体动力湍流的高分辨率三维模拟允许对傅立叶波形空间中理论相关时间表的行为进行定量评估。我们讨论非线性时间,AlfVén时间和估计光谱传输速率的分布。注意频谱特殊区域的潜在意义,例如二维极限和“临界平衡”区域。根据抑制因素的估计光谱传递的表述支持了一个结论,即准二维波动(以强非线性为特征)并不是一个奇异的极限,但通常可以预期会做出重要的贡献。
When magnetohydrodynamic turbulence evolves in the presence of a large-scale mean magnetic field, an anisotropy develops relative to that preferred direction. The well-known tendency is to develop stronger gradients perpendicular to the magnetic field, relative to the direction along the field. This anisotropy of the spectrum is deeply connected with anisotropy of estimated timescales for dynamical processes, and requires reconsideration of basic issues such as scale locality and spectral transfer. Here analysis of high-resolution three-dimensional simulations of unforced magnetohydrodynamic turbulence permits quantitative assessment of the behavior of theoretically relevant timescales in Fourier wavevector space. We discuss the distribution of nonlinear times, Alfvén times, and estimated spectral transfer rates. Attention is called to the potential significance of special regions of the spectrum, such as the two-dimensional limit and the "critical balance" region. A formulation of estimated spectral transfer in terms of a suppression factor supports a conclusion that the quasi two-dimensional fluctuations (characterized by strong nonlinearities) are not a singular limit, but may be in general expected to make important contributions.