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首页> 外文期刊>The Astrophysical journal >SELF-SUSTAINED TURBULENCE WITHOUT DYNAMICAL FORCING: A TWO-DIMENSIONAL STUDY OF A BISTABLE INTERSTELLAR MEDIUM
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SELF-SUSTAINED TURBULENCE WITHOUT DYNAMICAL FORCING: A TWO-DIMENSIONAL STUDY OF A BISTABLE INTERSTELLAR MEDIUM

机译:无动力的自持湍流:双稳态星际介质的二维研究

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In this paper, the nonlinear evolution of a bistable interstellar medium is investigated using two-dimensional simulations with a realistic cooling rate, thermal conduction, and physical viscosity. The calculations are performed using periodic boundary conditions without any external dynamical forcing. As the initial condition, a spatially uniform unstable gas under thermal equilibrium is considered. At the initial stage, the unstable gas quickly segregates into two phases: cold neutral medium (CNM) and warm neutral medium (WNM). Then, self-sustained turbulence with velocity dispersion of 0.1-0.2 km s–1 is observed in which the CNM moves around in the WNM. We find that the interfacial medium (IFM) between the CNM and WNM plays an important role in sustaining the turbulence. The self-sustaining mechanism can be divided into two steps. First, thermal conduction drives fast flows streaming into concave CNM surfaces toward the WNM. The kinetic energy of the fast flows in the IFM is incorporated into that of the CNM through the phase transition. Second, turbulence inside the CNM deforms interfaces and forms other concave CNM surfaces, leading to fast flows in the IFM. This drives the first step again and a cycle is established by which turbulent motions are self-sustained.
机译:在本文中,使用具有实际冷却速率,热传导和物理粘度的二维模拟,研究了双稳态星际介质的非线性演化。使用周期性边界条件执行计算,而无需任何外部动力强迫。作为初始条件,考虑了在热平衡下空间均匀的不稳定气体。在初始阶段,不稳定气体迅速分离为两个阶段:冷中性介质(CNM)和热中性介质(WNM)。然后,观察到速度分布为0.1-0.2 km s-1的自持湍流,其中CNM在WNM中运动。我们发现CNM和WNM之间的界面介质(IFM)在维持湍流中起着重要作用。自我维持机制可以分为两个步骤。首先,导热驱动快速流向WNM流入凹面CNM表面。 IFM中快速流动的动能通过相变并入CNM。其次,CNM内部的湍流使界面变形并形成其他凹面的CNM表面,从而导致IFM中的快速流动。这再次驱动了第一步,并建立了一个周期,通过该周期可以自我维持湍流运动。

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