首页> 外文会议>Hypervelocity Impact Symposium >Hypervelocity impact cratering of chondritic meteorites: Implications for asteroid recoil
【24h】

Hypervelocity impact cratering of chondritic meteorites: Implications for asteroid recoil

机译:软骨态陨石的超细性冲击陨石坑:小行星反冲的影响

获取原文

摘要

Porosities of asteroids range from 0 to >50%, with most >20%. Meteorites, which sample asteroids, have a similar range. Since porous targets react differently to hypervelocity cratering than non-porous targets, it is critical to measure the response of asteroid samples to impacts. We impacted 5 samples of the CV3 carbonaceous chondrite Northwest Africa (NWA) 4502 with a mean porosity of 2.1%, 7 samples of the ordinary chondrite NWA 869 with a mean porosity of 6.4%, and 1 sample of the ordinary chondrite Saratov with a porosity of 15.6%. Each meteorite was impacted by a 1/16" Al-sphere shot at 4.34 to 5.89 km/s at the NASA Ames Vertical Gun. Using high-speed video images we measured the recoil speed of each target and determined the momentum multiplication factor (?, the ratio between the recoil momentum of the target and the momentum of the impactor. (3 decreased with increasing porosity, consistent with hydrocode modeling. However, the ?values are larger, with ? 3.37 for NWA 4502, 2.70 for NWA 869, and 1.49 for Saratov, than results from hydrocode modeling for 5 km/s impacts into porous rock targets. Even the most porous meteorite we impacted had substantial momentum enhancement from crater ejecta. This should be considered in design of kinetic impact missions and modeling alteration of asteroid orbits by collisions.
机译:小行星的景观范围为0至50%,大多数> 20%。陨石,样品小行星,具有相似的范围。由于多孔靶点与非多孔靶植物不同的反应不同,因此测量小行星样本对撞击的响应至关重要。我们影响了5个样品的CV3碳质Chondrite西北非洲(NWA)4502,平均孔隙率为2.1%,7个样品的普通的Chondrite NWA 869,平均孔隙率为6.4%,1个具有孔隙率的普通的Chondrite Saratov样品。 15.6%。每个陨石都受到了1/16“Al-Sphere在4.34到5.89公里/秒的影响,在美国宇航局Ames垂直枪。使用高速视频图像,我们测量了每个目标的反冲速度并确定了动量乘法因子(? ,目标的反冲动量与冲击力的势力之间的比率。(3随着孔隙率的增加而减少,与流量模型一致。然而,Δ值较大,对于NWA 4502,2.70,对于NWA 869,和NWA 869 1.49对于Saratov,Serocode模型的结果5公里/秒的影响到多孔岩靶。即使是我们受影响的最多孔的陨石也从火山口喷射物中提高了大量的势头。这应该考虑在动力学影响任务的设计中和小行星的建模改变。轨道碰撞。

著录项

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