【24h】

Orbital debris removal and meteoroid deflection

机译:去除眼眶碎片和流星体偏斜

获取原文
获取原文并翻译 | 示例

摘要

Abstract: Orbital debris in low-Earth orbit in the size range from 1 to 10 cm in diameter can be detected but not tracked reliably enough to be avoided by spacecraft. It can cause catastrophic damage even to a shielded spacecraft. With adaptive optics, a ground-based pulsed laser ablating the debris surface can produce enough propulsion in several hundred pulses to cause such debris to reenter the atmosphere. A single laser station could remove all of the 1 - 10 cm debris in three years or less. A technology demonstration of laser space propulsion is proposed which would pave the way for the implementation of such a debris removal system. The cost of the proposed demonstration is comparable with the estimated annual cost of spacecraft operations in the present orbital debris environment. Orbital debris is not the only space junk that is deleterious to the Earth's environment. Collisions with asteroids have caused major havoc to the Earth's biosphere many times in the ancient past. Since the possibility still exists for major impacts of asteroids with the Earth, it shown that it is possible to scale up the systems to prevent these catastrophic collisions providing sufficient early warning is available from new generation space telescopes plus deep space radar tracking. !6
机译:摘要:可以探测到直径在1到10厘米范围内的近地轨道上的轨道碎片,但跟踪得不够可靠,航天器无法避免。它甚至会对屏蔽的航天器造成灾难性破坏。利用自适应光学器件,烧蚀碎屑表面的地面脉冲激光可以在数百个脉冲中产生足够的推进力,以使此类碎屑重新进入大气。一个激光站可以在三年或更短的时间内清除所有1-10 cm的碎片。提出了激光空间推进的技术演示,这将为实施此类碎屑清除系统铺平道路。拟议的示范费用与在目前的轨道碎片环境中航天器估计的年度费用相当。轨道碎片并不是唯一对地球环境有害的太空垃圾。在古代,与小行星的碰撞已经多次破坏了地球的生物圈。由于小行星与地球发生重大碰撞的可能性仍然存在,因此表明,只要新一代太空望远镜和深空雷达跟踪能够提供足够的预警,就可以扩大系统规模以防止这些灾难性碰撞。 !6

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