Debris Propogation Following a Spacecraft Mishap at the Collinear Earth-Moon Lagrange Points

被引:0
|
作者
Boone, Nathan [1 ]
Bettinger, Robert A. [1 ]
机构
[1] Air Force Inst Technol, Dept Aeronaut & Astronaut, Wright Pattersion AFB, OH 45433 USA
来源
2021 IEEE AEROSPACE CONFERENCE (AEROCONF 2021) | 2021年
关键词
cislunar; translunar; space debris; Lagrange points; Gateway; spacecraft explosion; novel orbits;
D O I
暂无
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
The theoretical analysis of the motion of space debris generated by a catastrophic spacecraft mishap in the vicinity of the Earth-Moon Lagrange points L-1 and L-2 is presented with a focus on the potential debris risks to notional cislunar spacecraft. The research develops a model for the masses and velocities of particles generated by a catastrophic spacecraft mishap, utilizes a four-body trajectory model to propagate the resulting debris, then applies a probabilistic survivability model to quantify risks to notional spacecraft in a variety of initial cislunar orbits. These notional spacecraft include NASA's proposed Lunar Gateway, a spacecraft near L-1, a spacecraft near L-2, and a spacecraft conducting a low-energy transfer to the Moon. Overall, the risks are very low, but potentially problematic accumulation of debris was observed near the Moon and in the manifolds of the Earth-Moon system, especially when the mishap occurs at L-1. Overall, research into collinear Lagrange point debris enhances operational planning for future Lagrange point space missions and understanding of the debris-related consequences of mishaps in cislunar space.
引用
收藏
页数:15
相关论文
共 50 条
  • [21] The Lagrangian points of the real Earth-Moon system
    Castellà, E
    Jorba, A
    EQUADIFF 2003: INTERNATIONAL CONFERENCE ON DIFFERENTIAL EQUATIONS, 2005, : 3 - 12
  • [22] Features of Space Debris Migration in the Earth-Moon System
    Salnikova, T. V.
    Kugushev, E. I.
    SOLAR SYSTEM RESEARCH, 2024, 58 (03) : 353 - 358
  • [23] A note on the dynamics around the Lagrange collinear points of the Earth–Moon system in a complete Solar System model
    Yijun Lian
    Gerard Gómez
    Josep J. Masdemont
    Guojian Tang
    Celestial Mechanics and Dynamical Astronomy, 2013, 115 : 185 - 211
  • [24] Rendezvous Strategies in the Vicinity of Earth-Moon Lagrangian Points
    Lizy-Destrez, Stephanie
    Beauregard, Laurent
    Blazquez, Emmanuel
    Campolo, Antonino
    Manglativi, Sara
    Quet, Victor
    FRONTIERS IN ASTRONOMY AND SPACE SCIENCES, 2019, 5
  • [25] EARTH-MOON LIBRATION POINTS - THEORY EXISTENCE AND APPLICATIONS
    STEG, L
    DEVRIES, JP
    SPACE SCIENCE REVIEWS, 1966, 5 (02) : 210 - &
  • [26] Solar Sail Orbits at the Earth-Moon Libration Points
    Simo, Jules
    McInnes, Colin R.
    NONLINEAR SCIENCE AND COMPLEXITY, 2011, : 147 - 155
  • [27] Solar sail orbits at the Earth-Moon libration points
    Simo, Jules
    McInnes, Colin R.
    COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION, 2009, 14 (12) : 4191 - 4196
  • [28] CAPTURE AN ASTEROID TO EARTH-MOON TRIANGULAR LIBRATION POINTS
    Liang, Yuying
    Shan, Jinjun
    Xu, Ming
    Xu, Shijie
    SPACEFLIGHT MECHANICS 2019, VOL 168, PTS I-IV, 2019, 168 : 1103 - 1117
  • [29] Optimal station-keeping near Earth-Moon collinear libration points using continuous and impulsive maneuvers
    Ghorbani, Mehrdad
    Assadian, Nima
    ADVANCES IN SPACE RESEARCH, 2013, 52 (12) : 2067 - 2079
  • [30] Transfer orbits to the Earth-Moon triangular libration points
    Zhang, Zhengtao
    Hou, Xiyun
    ADVANCES IN SPACE RESEARCH, 2015, 55 (12) : 2899 - 2913