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Mars double-aeroflyby free returns

机译:火星双飞免费返还

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摘要

Mars double-flyby free-return trajectories that pass twice through the Martian atmosphere are documented. This class of trajectories is advantageous for potential Mars atmospheric sample return missions because of its low geocentric energy at departure and arrival, because it would enable two sample collections at unique locations during different Martian seasons, and because of its lack of deterministic maneuvers. Free return opportunities are documented over Earth departure dates ranging from 2015 through 2100, with viable missions available every Earth-Mars synodic period. After constraining the maximum lift-to-drag ratio to be less than one, the minimum observed Earth departure hyperbolic excess speed is 3.23 km/s, the minimum Earth atmospheric entry speed is 11.42 km/s, and the minimum round-trip flight time is 805 days. An algorithm using simplified dynamics is developed along with a method to derive an initial estimate for trajectories in a more realistic dynamic model. Multiple examples are presented, including free returns that pass outside and inside of Mars's appreciable atmosphere.
机译:记录了两次穿过火星大气层的火星双飞过的自由返回轨迹。此类轨迹对火星大气样本的返回任务是有利的,因为它在出发和到达时的地心能量较低,因为在不同的火星季节,它将能够在独特的位置进行两次样本采集,并且缺乏确定性的机动性。在2015年至2100年的地球起飞日期记录了免费返航的机会,并且在每个地球与火星的历史过程中都可以进行可行的飞行任务。将最大升阻比限制为小于1后,观测到的最小地球离地双曲线超速为3.23 km / s,最小地球大气进入速度为11.42 km / s,最小往返飞行时间是805天。开发了一种使用简化动力学的算法以及一种在更现实的动力学模型中得出轨迹初始估计的方法。文中列举了多个例子,包括在火星大气层内部和外部传递的免费回报。

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