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首页> 外文期刊>The Astrophysical journal >Dense Regions in Supersonic Isothermal Turbulence
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Dense Regions in Supersonic Isothermal Turbulence

机译:超音速等温湍流的密集区域

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摘要

The properties of supersonic isothermal turbulence influence a variety of astrophysical phenomena, including the structure and evolution of star-forming clouds. This work presents a simple model for the structure of dense regions in turbulence in which the density distribution behind isothermal shocks originates from rough hydrostatic balance between the pressure gradient behind the shock and its deceleration from ram pressure applied by the background fluid. Using simulations of supersonic isothermal turbulence and idealized waves moving through a background medium, we show that the structural properties of dense, shocked regions broadly agree with our analytical model. Our work provides a new conceptual picture for describing the dense regions, which complements theoretical efforts to understand the bulk statistical properties of turbulence and attempts to model the more complex features of star-forming clouds like magnetic fields, self-gravity, or radiative properties.
机译:超音速等温湍流的特性影响各种天体物理学现象,包括恒星形成云的结构和演化。这项工作为湍流中的密集区域的结构提供了一个简单的模型,其中等温激波背后的密度分布源自激波背后的压力梯度与其由背景流体施加的冲压压力所引起的减速之间的大致流体静力平衡。使用超音速等温湍流和理想波在背景介质中运动的模拟,我们表明,致密,受冲击区域的结构特性与我们的分析模型大致吻合。我们的工作为描述稠密区域提供了新的概念图,补充了对理解湍流总体统计特性的理论努力,并试图对恒星形成云的更复杂特征(例如磁场,自重或辐射特性)建模。

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