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Mission Design and Analysis for Suborbital Intercept and Fragmentation of an Asteroid with Very Short Warning Time

机译:预警时间非常短的小行星的亚轨道拦截和破碎任务设计和分析

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Small near-Earth objects (NEOs) ~50-150 m in size are far more numerous (hundreds of thousands to millions yet to be discovered) than larger NEOs. Small NEOs, which are mostly asteroids rather than comets, are very faint in the night sky due to their small sizes, and are, therefore, difficult to discover far in advance of Earth impact. Furthermore, even small NEOs are capable of creating explosions with energies on the order of tens or hundreds of megatons (Mt). We are, therefore, motivated to prepare to respond effectively to short warning time, small NEO impact scenarios. In this paper we explore the lower bound on actionable warning time by investigating the performance of notional upgraded Intercontinental Ballistic Missiles (ICBMs) to carry Nuclear Explosive Device (NED) payloads to intercept and disrupt a hypothetical incoming NEO at high altitudes (generally at least 2500 km above Earth). We conduct this investigation by developing optimal NEO intercept trajectories for a range of cases and comparing their performances. Our results show that suborbital NEO intercepts using Minuteman Ⅲ or SM-3 IIA launch vehicles could achieve NEO intercept a few minutes prior to when the NEO would strike Earth. We also find that more powerful versions of the launch vehicles (e.g., total △V ~9.5-11 km/s) could intercept incoming NEOs several hours prior to when the NEO would strike Earth, if launched at least several days prior to the time of intercept. Finally, we discuss a number of limiting factors and practicalities that affect whether the notional systems we describe could become feasible.
机译:约50-150 m的小型近地天体(NE)数量更多(数十万至数百万尚未发现)。小型近地天体主要是小行星而不是彗星,由于它们的体积小,它们在夜空中非常微弱,因此很难在大地撞击之前就发现。此外,即使是小型NEO也能够以数十或数百兆吨(Mt)的能量产生爆炸。因此,我们有动力做好准备,以有效地应对较短的预警时间,较小的NEO影响情景。在本文中,我们通过调查名义上升级的洲际弹道导弹(ICBM)携带核爆炸装置(NED)载荷来拦截和破坏假定的高空进入的近地天体的性能,探索了可行预警时间的下限。高于地球的公里)。我们通过针对各种情况开发最佳的NEO拦截轨迹并比较其性能来进行此调查。我们的结果表明,使用MinutemanⅢ或SM-3 IIA运载火箭进行亚轨道NEO拦截可以在NEO撞击地球之前的几分钟内实现NEO拦截。我们还发现,更强大的运载工具版本(例如,总△V〜9.5-11 km / s)如果在NEO撞击地球之前至少几天发射,它们可能会在NEO撞击地球之前几个小时拦截传入的NEO。的拦截。最后,我们讨论了许多限制因素和实用性,这些限制因素和实用性会影响我们描述的概念系统是否可行。

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