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Impact and explosion crater ejecta, fragment size, and velocity

机译:撞击和爆炸坑弹射,碎片大小和速度

摘要

A model was developed for the mass distribution of fragments that are ejected at a given velocity for impact and explosion craters. The model is semi-empirical in nature and is derived from (1) numerical calculations of cratering and the resultant mass versus ejection velocity, (2) observed ejecta blanket particle size distributions, (3) an empirical relationship between maximum ejecta fragment size and crater diameter and an assumption on the functional form for the distribution of fragements ejected at a given velocity. This model implies that for planetary impacts into competent rock, the distribution of fragments ejected at a given velocity are nearly monodisperse, e.g., 20% of the mass of the ejecta at a given velocity contain fragments having a mass less than 0.1 times a mass of the largest fragment moving at that velocity. Using this model, the largest fragment that can be ejected from asteroids, the moon, Mars, and Earth is calculated as a function of crater diameter. In addition, the internal energy of ejecta versus ejecta velocity is found. The internal energy of fragments having velocities exceeding the escape velocity of the moon will exceed the energy required for incipient melting for solid silicates and thus, constrains the maximum ejected solid fragment size.
机译:为撞击和爆炸坑以给定速度弹出的碎片的质量分布开发了一个模型。该模型本质上是半经验的,它是从以下几个方面得出的:(1)缩孔的数值计算以及由此产生的质量与喷射速度的关系;(2)观察到的喷射毯粒径分布;(3)最大喷射碎片尺寸和弹坑之间的经验关系直径和以给定速度喷射的碎片分布的功能形式的假设。该模型暗示,对于行星撞击到称职的岩石,以给定速度喷射的碎片的分布几乎是单分散的,例如,以给定速度喷射的质量的20%包含质量小于质量的0.1倍的碎片以该速度移动的最大碎片。使用该模型,可以计算出从小行星,月球,火星和地球喷出的最大碎片,它是陨石坑直径的函数。另外,发现了喷射的内部能量与喷射速度的关系。速度超过月球逃逸速度的碎片的内部能量将超过固态硅酸盐初融所需的能量,因此限制了最大射出的固体碎片尺寸。

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  • 作者

    Ahrens T. J.; Okeefe J. D.;

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  • 年度 1983
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