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首页> 外文期刊>The Astrophysical journal >DENSITY PROBABILITY DISTRIBUTION FUNCTIONS IN SUPERSONIC HYDRODYNAMIC AND MHD TURBULENCE
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DENSITY PROBABILITY DISTRIBUTION FUNCTIONS IN SUPERSONIC HYDRODYNAMIC AND MHD TURBULENCE

机译:超音速水力和MHD湍流中的密度概率分布函数

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We study the probability distribution function (PDF) of the mass density in simulations of supersonic turbulence with properties appropriate for molecular clouds. For this study we use Athena, a new higher-order Godunov code. We find there are surprisingly similar relationships between the mean of the time-averaged PDF and the turbulent Mach number for driven hydrodynamic and strong-field MHD turbulence. There is, however, a large scatter about these relations, indicating a high level of temporal and spatial variability in the PDF. Thus, the PDF of the mass density is unlikely to be a good measure of magnetic field strength. We also find that the PDF of decaying MHD turbulence deviates from the mean-Mach relation found in the driven case. This implies that the instantaneous Mach number alone is not enough to determine the statistical properties of turbulence that is out of equilibrium. The scatter about the mean-Mach relation for driven turbulence, along with the large departure of decaying turbulence PDFs from those of driven turbulence, may illuminate one factor contributing to the large observed cloud-to-cloud variation in the star formation rate per solar mass.
机译:我们在模拟具有分子分子性质的超音速湍流中研究质量密度的概率分布函数(PDF)。在本研究中,我们使用新的高阶Godunov代码Athena。我们发现,时间平均PDF的平均值与驱动流体动力和强场MHD湍流的湍流马赫数之间存在令人惊讶的相似关系。但是,关于这些关系的分散很大,表明PDF中的时间和空间变异性很高。因此,质量密度的PDF不太可能是磁场强度的良好度量。我们还发现,衰减的MHD湍流的PDF偏离了在驱动情况下发现的均值-马赫关系。这意味着仅凭瞬时马赫数不足以确定不平衡湍流的统计特性。关于驱动湍流的均值-马赫关系的散布,以及衰减湍流PDF与驱动湍流的PDF的较大偏离,可能说明了一个导致观测到的单位太阳质量恒星形成率云与云变化较大的因素。

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