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LOCALITY OF MHD TURBULENCE IN ISOTHERMAL DISKS

机译:等温碟中MHD湍流的局部性

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We numerically evolve turbulence driven by the magnetorotational instability (MRI) in a three-dimensional, unstratified shearing box and study its structure using two-point correlation functions. We confirm Fromang and Papaloizou's result that shearing box models with zero net magnetic flux are not converged; the dimensionless shear stress α is proportional to the grid scale. We find that the two-point correlation of shows that it is composed of narrow filaments that are swept back by differential rotation into a trailing spiral. The correlation lengths along each of the correlation function principal axes decrease monotonically with the grid scale. For mean azimuthal field models, which we argue are more relevant to astrophysical disks than the zero net field models, we find that: α increases weakly with increasing resolution at fixed box size; α increases slightly as the box size is increased; α increases linearly with net field strength, confirming earlier results; the two-point correlation function of the magnetic field is resolved and converged, and is composed of narrow filaments swept back by the shear; the major axis of the two-point increases slightly as the box size is increased; these results are code independent, based on a comparison of ATHENA and ZEUS runs. The velocity, density, and magnetic fields decorrelate over scales larger than ~H, as do the dynamical terms in the magnetic energy evolution equations. We conclude that MHD turbulence in disks is localized, subject to the limitations imposed by the absence of vertical stratification, the use of an isothermal equation of state, finite box size, finite run time, and finite resolution.
机译:我们在三维无分层剪切箱中,通过磁旋转不稳定性(MRI)驱动的湍流进行了数值演化,并使用两点相关函数研究了其结构。我们确认了弗洛曼和帕帕罗祖的结果,即净磁通量为零的剪切箱模型没有收敛;无因次剪应力α与网格比例成正比。我们发现的两点相关性表明它是由细丝组成的,这些细丝通过差速旋转扫回到尾随的螺旋中。沿着每个相关函数主轴的相关长度随网格比例单调减小。对于平均方位角场模型,我们认为与零净场模型相比,它与天体圆盘更为相关,我们发现:在固定盒子尺寸下,α随着分辨率的提高而微弱地增加; α随着盒子尺寸的增加而略有增加; α随净磁场强度线性增加,证实了较早的结果;磁场的两点相关函数被分解和收敛,由剪切力扫回的细丝组成。随着盒子尺寸的增加,两点的主轴稍微增加;这些结果是基于ATHENA和ZEUS运行的比较而与代码无关的。速度,密度和磁场在大于〜H的尺度上解相关,磁能演化方程中的动力学项也是如此。我们得出的结论是,磁盘中的MHD湍流是局部的,受制于缺乏垂直分层,使用等温状态方程,有限的盒子尺寸,有限的运行时间和有限的分辨率所施加的限制。

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