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首页> 外文期刊>The Astrophysical journal >THE BEHAVIOR OF FRAGMENTS OF COMET SHOEMAKER-LEVY 9 IN THE ATMOSPHERE OF JUPITER
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THE BEHAVIOR OF FRAGMENTS OF COMET SHOEMAKER-LEVY 9 IN THE ATMOSPHERE OF JUPITER

机译:木星大气中COMOME SHOEMKER-LEVY 9的碎片行为

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Studies of the entry of fragments of comet Shoemaker-Levy 9 into the atmosphere of Jupiter give conflicting predictions as to whether or not most of the energy is deposited above the clouds. Using analytical models, we find that for a typical fragment radius of 1.5 km, both deceleration and mass loss (ablation) are negligible above the 1 bar level, so most of the energy will be deposited below the clouds, where radiation is blocked from escaping. The bulk of the energy produced by entering fragments will be observable only if the energy deposited below the clouds is transported above the clouds by means other than radiation. We provide new calculations of the flattening of fragments by ram pressure, of radiation-driven evaporative ablation, and of ablation of droplets formed by Kelvin-Helmholtz instability.
机译:关于Shoemaker-Levy 9彗星的碎片进入木星大气的研究表明,关于大多数能量是否沉积在云层之上的说法相互矛盾。使用分析模型,我们发现对于1.5 km的典型碎片半径,在1 bar的水平以上,减速和质量损失(消融)都可以忽略不计,因此大部分能量将沉积在云层以下,从而阻止了辐射逸出。仅当沉积在云层下方的能量通过辐射以外的其他方式在云层上方传输时,才能观察到进入碎片产生的大部分能量。我们提供了新的计算方法,用于计算通过冲压压力使碎片变平,辐射驱动的蒸发消融以及由开尔文-亥姆霍兹不稳定性形成的液滴消融。

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