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Trajectories for Fly by Sample Return at Icy Moons

机译:冰冷月球样本返回飞行轨迹

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摘要

Ballistic trajectories are computed that aim to achieve a sample-return mission to Europa, Enceladus, or Titan without capturing, descending, or landing. The low-cost mission concept uses a free-return trajectory that also involves a close flyby of the icy moon. A broad-search algorithm is developed to construct feasible itineraries, and Venus and Earth gravity-assist sequences are considered. Select solutions from the broad search are then optimized to be continuous using gravity of the full ephemeris. Solution characteristics are examined over a complete 12-year Jupiter period and 30-year Saturn period. For Europa and Titan, the outbound Venus-Earth-Earth gravity assist (VEEGA) option can significantly reduce launch C-3, compared to alternate options. For Europa, various optimized results are computed with C-3 as low as 16.0 k m(2) /s(2), reentry speeds comparable to the Stardust capsule, and flight times of 9-15 years. Unfortunately, an Enceladus mission requires a flight time of 25 years or more and incurs fairly high relative speeds. Optimized direct and VEEGA missions to Titan are presented, with total flight times of 16 and 25 years, respectively.
机译:计算弹道的目的是在不捕获,下降或着陆的情况下实现对欧罗巴,土卫二或土卫六的样本返回任务。低成本任务概念使用的是自由返回轨迹,该轨迹还涉及冰月的近距离掠过。开发了广泛搜索算法来构造可行的路线,并考虑了金星和地球重力辅助序列。然后,将使用广泛星历的引力将来自广泛搜索的精选解决方案进行优化,使其连续。在整个12年的木星周期和30年的土星周期中检查溶液的特性。对于欧罗巴和泰坦,与备用选项相比,出站金星-地球-地球重力辅助(VEEGA)选件可以大大减少C-3发射。对于欧罗巴,使用低至16.0 k m(2)/ s(2)的C-3,可比拟星尘舱的再入速度和9-15年的飞行时间计算出各种优化结果。不幸的是,一次土卫二的飞行任务需要25年或更长时间的飞行时间,并且会产生相当高的相对速度。展示了飞往泰坦的最佳直航和VEEGA任务,总飞行时间分别为16年和25年。

著录项

  • 来源
    《Journal of Spacecraft and Rockets》 |2018年第3期|529-540|共12页
  • 作者

    Jones Drew Ryan;

  • 作者单位

    CALTECH, Jet Prop Lab, Mission Design & Nav Sect, 4800 Oak Grove Dr, Pasadena, CA 91109 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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