【24h】

Excavation of the Subsurface by Hypervelocity Impacts: Insight from Experiments and Lessons from Missions

机译:超高速撞击对地下的开挖:实验的启示和任务的教训

获取原文

摘要

Impact-induced excavation is one of the few methods available that allows remote measurement of planetary subsurfaces. During a hypervelocity impact event on a planetary body, strong Shockwaves and subsequent rarefaction waves set material in motion, excavating and ejecting a portion of the target up and out of the crater to expose fresh material from below. While fresh ejecta patterns and steep slopes of craters from natural impacts have long been used to infer properties of the subsurface, recent planned artificial impacts, such as the Deep Impact and LCROSS missions, have demonstrated the utility in observing and measuring the ejecta during the impact event. Measurements from instruments capturing the in-flight ejecta dynamics, such as cameras, spectrometers, and thermal radiometers, can expose volatiles hidden in the subsurface, characterize material properties, and constrain the provenance of the excavated material. In order to interpret the measurements, the mass-velocity distribution of ejected material must be understood. In this study, we present new experimental measurements of the ejecta distribution and crater growth from early- to main-stage flow for hypervelocity impacts at the NASA Ames Vertical Gun Range. These new data are used to estimate and compare the ejecta yield from LCROSS and a hypothetical cubesat impact mission, and demonstrate the ability to characterize the subsurface by analysis of the ejected material.
机译:冲击诱发的开挖是可用于远程测量行星地下的少数几种方法之一。在行星体发生超高速撞击事件期间,强烈的冲击波和随后的稀疏波使材料运动,将目标物的一部分向上挖掘并从弹坑中弹出,从而从下方暴露出新鲜的材料。长期以来,人们一直使用新鲜的弹射图样和自然撞击造成的火山口陡峭倾斜来推断地下属性,而最近计划的人工撞击(如“深部撞击”和“ LCROSS”任务)证明了在撞击期间观测和测量弹射器的实用性事件。来自捕获飞行中射流动力学的仪器(例如照相机,光谱仪和热辐射计)的测量值可以暴露出隐藏在地下的挥发物,表征材料特性,并限制被挖掘材料的出处。为了解释测量结果,必须了解所喷射物料的质量-速度分布。在这项研究中,我们提出了从早期流向主流的弹射分布和弹坑生长的新实验测量方法,用于在NASA Ames垂直火炮靶场上产生超高速撞击。这些新数据用于估计和比较LCROSS和假设的立方体撞击任务的喷射量,并展示通过分析喷射物质表征地下的能力。

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号