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首页> 外文期刊>The Astrophysical journal >VISCOUS AND RESISTIVE EFFECTS ON THE MAGNETOROTATIONAL INSTABILITY WITH A NET TOROIDAL FIELD
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VISCOUS AND RESISTIVE EFFECTS ON THE MAGNETOROTATIONAL INSTABILITY WITH A NET TOROIDAL FIELD

机译:净环形磁场对磁旋转不稳定性的粘滞效应

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Resistivity and viscosity have a significant role in establishing the energy levels in turbulence driven by the magnetorotational instability (MRI) in local astrophysical disk models. This study uses the Athena code to characterize the effects of a constant shear viscosity ν and Ohmic resistivity η in unstratified shearing box simulations with a net toroidal magnetic flux. A previous study of shearing boxes with zero net magnetic field performed with the ZEUS code found that turbulence dies out for values of the magnetic Prandtl number, P m = ν/η, below P m ~ 1; for P m 1, time- and volume-averaged stress levels increase with P m. We repeat these experiments with Athena and obtain consistent results. Next, the influence of viscosity and resistivity on the toroidal field MRI is investigated both for linear growth and for fully developed turbulence. In the linear regime, a sufficiently large ν or η can prevent MRI growth; P m itself has little direct influence on growth from linear perturbations. By applying a range of values for ν and η to an initial state consisting of fully developed turbulence in the presence of a background toroidal field, we investigate their effects in the fully nonlinear system. Here, increased viscosity enhances the turbulence, and the turbulence decays only if the resistivity is above a critical value; turbulence can be sustained even when P m 1, in contrast to the zero net field model. While we find preliminary evidence that the stress converges to a small range of values when ν and η become small enough, the influence of dissipation terms on MRI-driven turbulence for relatively large η and ν is significant, independent of field geometry.
机译:电阻率和粘度在确定由当地天体物理磁盘模型中的磁旋转不稳定性(MRI)驱动的湍流中的能级中起着重要作用。这项研究使用Athena代码来表征在具有净环形磁通量的非分层剪切盒模拟中恒定剪切粘度ν和欧姆电阻率η的影响。先前使用ZEUS代码对零磁场磁场的剪切箱进行的研究发现,在P m〜1以下的磁Prandtl数P m =ν/η的情况下,湍流消失了。对于P m 1,时间和体积平均应力水平随P m增加。我们用雅典娜重复这些实验,并获得一致的结果。接下来,研究了粘度和电阻率对环形场MRI的影响,包括线性增长和充分发展的湍流。在线性状态下,足够大的ν或η可以阻止MRI的增长。 P m本身对线性扰动的增长几乎没有直接影响。通过在存在背景环形场的情况下将范围为ν和η的值应用到由完全发展的湍流组成的初始状态,我们研究了它们在完全非线性系统中的作用。在此,增加的粘度会增强湍流,并且只有在电阻率高于临界值时,湍流才会衰减;与零净场模型相比,即使P m <1,湍流也可以持续。虽然我们发现初步的证据表明,当ν和η变得足够小时,应力会收敛到较小的值范围,但是对于较大的η和ν,耗散项对MRI驱动的湍流的影响是显着的,而与场的几何形状无关。

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