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Penetration of projectiles into granular targets (Review)

机译:弹丸渗透成颗粒状目标(综述)

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摘要

Energetic collisions of subatomic particles with fixed or moving targets have been very valuable to penetrate into the mysteries of nature. But the mysteries are quite intriguing when projectiles and targets are macroscopically immense. We know that countless debris wandering in space impacted (and still do) large asteroids, moons and planets; and that millions of craters on their surfaces are traces of such collisions. By classifying and studying the morphology of such craters, geologists and astrophysicists obtain important clues to understand the origin and evolution of the Solar System. This review surveys knowledge about crater phenomena in the planetary science context, avoiding detailed descriptions already found in excellent papers on the subject. Then, it examines the most important results reported in the literature related to impact and penetration phenomena in granular targets obtained by doing simple experiments. The main goal is to discern whether both schools, one that takes into account the right ingredients (planetary bodies and very high energies) but cannot physically reproduce the collisions, and the other that easily carries out the collisions but uses laboratory ingredients (small projectiles and low energies), can arrive at a synergistic intersection point.
机译:亚原子粒子与固定或移动目标的强烈碰撞对于深入自然的奥秘非常有价值。但是,当从宏观上看,弹丸和目标巨大时,这些谜团就很有趣。我们知道,无数碎片在太空中游荡会影响(现在仍然如此)大型小行星,卫星和行星;并且在其表面上的数百万个火山口就是这种碰撞的痕迹。通过对此类陨石坑的形态进行分类和研究,地质学家和天体物理学家可以获得了解太阳系起源和演化的重要线索。这篇评论调查了行星科学背景下有关火山口现象的知识,避免了在有关该主题的优秀论文中已经发现的详细描述。然后,它检查了文献中报告的最重要的结果,这些结果与通过简单实验获得的颗粒目标的撞击和穿透现象有关。主要目标是辨别两所学校是否都考虑到了正确的成分(行星体和非常高的能量)但不能物理再现碰撞,而另一所学校易于进行碰撞但使用实验室成分(小弹丸和低能量),可以到达一个协同交叉点。

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