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A LABORATORY INVESTIGATION OF SUPERSONIC CLUMPY FLOWS: EXPERIMENTAL DESIGN AND THEORETICAL ANALYSIS

机译:超声超音速流动的实验室研究:实验设计和理论分析

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摘要

We present a design for high energy density laboratory experiments studying the interaction of hypersonic shocks with a large number of inhomogeneities. These "clumpy" flows are relevant to a wide variety of astrophysical environments, including the evolution of molecular clouds, outflows from young stars, planetary nebulae, and active galactic nuclei. The experiment consists of a strong shock (driven by a pulsed-power machine or a high-intensity laser) impinging on a region of randomly placed plastic rods. We discuss the goals of the specific design and how they are met by specific choices of target components. An adaptive mesh refinement hydrodynamic code is used to analyze the design and establish a predictive baseline for the experiments. The simulations confirm the effectiveness of the design in terms of articulating the differences between shocks propagating through smooth and clumpy environments. In particular, we find significant differences between the shock propagation speeds in a clumpy medium and those in a smooth one with the same average density. The simulation results are of general interest for foams in both inertial confinement fusion and laboratory astrophysics studies. Our results highlight the danger of using average properties of inhomogeneous astrophysical environments when comparing timescales for critical processes, such as shock crossing and gravitational collapse.
机译:我们提出了一种高能密度实验室实验的设计,用于研究高超声速冲击与大量不均匀性的相互作用。这些“笨拙的”流与各种各样的天体环境有关,包括分子云的演化,年轻恒星的流出,行星状星云和活跃的银河核。实验包括撞击在随机放置的塑料棒区域上的强烈冲击(由脉冲功率机或高强度激光驱动)。我们讨论了特定设计的目标以及目标组件的特定选择如何实现这些目标。自适应网格细化水动力代码用于分析设计并为实验建立预测基线。仿真表明了设计在通过光滑和块状环境传播的冲击之间的差异方面的有效性。特别是,我们发现在块状介质中和平均密度相同的光滑介质中,冲击传播速度之间存在显着差异。在惯性约束聚变和实验室天体物理学研究中,泡沫的模拟结果都具有普遍意义。我们的结果凸显了在比较关键过程的时标(如冲击波穿越和重力坍塌)时使用非均质天体环境平均属性的危险。

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