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Kinetic helicity and MHD turbulence

机译:运动螺旋度和MHD湍流

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摘要

The issue of dynamical anisotropy in helical three-dimensional magnetohydrodynamic turbulence with a mean magnetic field B-0 is investigated. Using high-resolution direct numerical simulations, we follow the evolution of various isotropic initial states characterized by their different values of the kinetic helicity. The cross helicity and magnetic helicity of the initial conditions are also varied. In agreement with earlier work, we find that such initial states become anisotropic in of order an eddy-turnover time, with correlation lengths parallel to B-0 remaining largely unchanged while finer scales are excited in the perpendicular directions. Moreover, it is found that the development of both the anisotropy and the energy are essentially independent of the initial level of kinetic helicity. The physics associated with this latter feature is discussed. [References: 57]
机译:研究了平均磁场为B-0的螺旋三维磁流体动力湍流中的动力学各向异性问题。使用高分辨率直接数值模拟,我们追踪了各种各向同性初始状态的演变,这些初始状态的特征在于它们的动力学螺旋度值不同。初始条件的交叉螺旋和磁螺旋也不同。与早期的工作相一致,我们发现这种初始状态按照涡流转换时间的顺序变为各向异性,与B-0平行的相关长度在很大程度上保持不变,而在垂直方向上激发了更细的尺度。此外,发现各向异性和能量的发展基本上与动力学螺旋的初始水平无关。讨论了与此后一个特征相关的物理学。 [参考:57]

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