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Turbulent cascades in anisotropic magnetohydrodynamics

机译:各向异性磁流体动力学中的湍流叶栅

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The cascade behavior of turbulent magnetohydrodynamics with a strong background magnetic field is examined and compared with direct numerical solutions at high Reynolds number. Resonant interactions give rise to qualitatively different behavior for modes below a characteristic wave number k(L) defined in terms of the background field. Modes with parallel wave number above k(L) are passively driven by the longer wavelength modes, even when the majority of the energy is contained in the passive wave numbers. The passive modes do not cascade to higher parallel wave numbers, so the parallel wave number spectrum is not a power law and does not extend to dissipation scales. Energy is cascaded normally to small perpendicular scales, but more rapidly in the case of the passive modes, so anisotropic spectrum develops from isotropic initial conditions. For a finite system with minimum wave number >k(L), the only dynamically controlling mode is the vertical average,or mean mode.The mean mode evolves with two-dimensional dynamics, forming coherent current structures which are mirrored by the passive modes. Because of the differential decay rates, the mean mode dominates at long times. Quantitative comparisons are made to numerical solutions of reduced magnetohydrodynamics. [References: 27]
机译:研究了具有强背景磁场的湍流磁流体动力学的级联特性,并将其与高雷诺数下的直接数值解进行了比较。对于低于根据背景场定义的特征波数k(L)的模式,共振相互作用会引起质的不同行为。即使波长的大部分能量包含在无源波数中,平行波数高于k(L)的模式也可以由较长的波长模式被动驱动。无源模式不会级联到较高的并行波数,因此并行波数频谱不是幂律,并且不会扩展到耗散标度。能量通常级联到较小的垂直尺度,但在被动模式下会更快,因此各向异性谱是从各向同性初始条件发展而来的。对于具有最小波数> k(L)的有限系统,唯一的动态控制模式是垂直平均或均值模式。均值模式随二维动力学演化,形成相干的电流结构,这些结构被无源模式镜像。由于衰减率的差异,平均模式长时间处于支配地位。对减少的磁流体动力学的数值解进行了定量比较。 [参考:27]

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