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Vortex Generation by Shock-Bubble Interaction in Galaxy Clusters

机译:通过银河集群中的震动泡泡相互作用的涡流产生

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Fluid mechanics is at the heart of almost all astronomical research. In many cases, the conditions in astrophysical systems are such that supersonic flows are common. As a result, the most energetic phenomena in astronomy all involve some form of shock physics, often relativistic. It is believed that the emission from the brightest objects in the universe is powered by shocks. And because the universe is now cold, the accretion if gas by the largest structures in the unverse, galaxy clusters, involves enormous shock, on scales of millions of light years.
机译:流体力学是几乎所有天文学研究的核心。在许多情况下,天体物理系统中的条件是使得超声波流量很常见。结果,天文学中最精力充沛的现象都涉及某种形式的休克物理,通常是相对论的。据信,宇宙中最亮的物体的排放受冲击动力。因为宇宙现在是寒冷的,如果气体是不合适的,银河系集群的最大结构的气体,则涉及巨大的震撼,在数百万光年的尺寸上。

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