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The statistics of a passive scalar in field-guided magnetohydrodynamic turbulence

机译:场导磁流体动力湍流中无源标量的统计

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摘要

A variety of studies of magnetised plasma turbulence invoke theories for the advection of a passive scalar by turbulent fluctuations. Examples include modelling the electron density fluctuations in the interstellar medium, understanding the chemical composition of galaxy clusters and the intergalactic medium, and testing the prevailing phenomenological theories of magnetohydrodynamic turbulence. While passive scalar turbulence has been extensively studied in the hydrodynamic case, its counterpart in MHD turbulence is significantly less well understood. Herein we conduct a series of high-resolution direct numerical simulations of incompressible, field-guided, MHD turbulence in order to establish the fundamental properties of passive scalar evolution. We study the scalar anisotropy, establish the scaling relation analogous to Yaglom's law, and measure the intermittency of the passive scalar statistics. We also assess to what extent the pseudo Alfven fluctuations in strong MHD turbulence can be modelled as a passive scalar. The results suggest that the dynamics of a passive scalar in MHD turbulence is considerably more complicated than in the hydrodynamic case.
机译:磁化等离子体湍流的各种研究都引用了通过湍流波动对被动标量进行平流的理论。例如,对星际介质中的电子密度涨落进行建模,了解星系团和银河系间介质的化学组成以及测试流行的磁流体动力湍流现象学理论。虽然在流体动力学情况下已对被动标量湍流进行了广泛研究,但对MHD湍流的对应标定却知之甚少。本文中,我们对不可压缩的,场引导的MHD湍流进行了一系列高分辨率直接数值模拟,以建立被动标量演化的基本特性。我们研究标量各向异性,建立类似于Yaglom定律的标度关系,并测量无源标量统计的间断性。我们还评估了强MHD湍流中伪Alfven波动在多大程度上可以建模为被动标量。结果表明,MHD湍流中被动标量的动力学比流体动力学情况复杂得多。

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