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Modeling Momentum Transfer from Kinetic Impacts: Implications for Redirecting Asteroids

机译:从动力学影响模型势头转移:用于重定向小行星的影响

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Kinetic impactors are one way to deflect a potentially hazardous object headed for Earth. The Asteroid Impact and Deflection Assessment (AIDA) mission is designed to test the effectiveness of this approach and is a joint effort between NASA and ESA. The NASA-led portion is the Double Asteroid Redirect Test (DART) and is composed of a ~300-kg spacecraft designed to impact the moon of the binary system 65803 Didymos. The deflection of the moon will be measured by the ESA-led Asteroid Impact Mission (AIM) (which will characterize the moon) and from ground-based observations. Because the material properties and internal structure of the target are poorly constrained, however, analytical models and numerical simulations must be used to understand the range of potential outcomes. Here, we describe a modeling effort combining analytical models and CTH simulations to determine possible outcomes of the DART impact. We examine a wide parameter space and provide predictions for crater size, ejecta mass, and momentum transfer following the impact into the moon of the Didymos system. For impacts into "realistic" asteroid types, these models produce craters with diameters on the order of 10 m, an imparted Av of 0.5-2 mm/s and a momentum enhancement of 1.07 to 5 for a highly porous aggregate to a fully dense rock.
机译:动力学撞击器是一种偏转潜在危险物体的一种方式。小行星的影响和偏转评估(AIDA)特派团旨在测试这种方法的有效性,是美国宇航局和欧洲航空航天局之间的共同努力。 NASA-LED部分是双行小行星重定向测试(DART),由〜300kg航天器组成,旨在影响二元系统的月亮65803迪米斯。月亮的偏转将由ESA-LED小行星影响使命(AIM)(其旨在表征月球)和基于地面的观察来衡量。因为目标的材料特性和内部结构受到严重约束,但必须使用分析模型和数值模拟来理解潜在结果的范围。在这里,我们描述了分析模型和第CTH模拟的建模工作,以确定飞镖撞击的可能结果。我们检查一个宽的参数空间,并为火山口大小,喷射物质量和势头转移提供预测,在陷入迪曼系统的月亮之后。对于进入“现实”的小行星类型的影响,这些模型在10μm的阶数产生直径的陨石坑,赋予0.5-2 mm / s的赋予v且动量增强1.07至5,对于完全密集的岩石。

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