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Trajectories for Europa Flyby Sample Return

机译:Europa Flyby样品返回的轨迹

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Ballistic trajectories are computed which would enable a sample return mission to Europa without capturing, descending, or landing. The low-cost mission concept utilizes a free return trajectory that also involves a close flyby of Europa. Near Europa, a small impactor would kinetically impact the icy moon and generate a plume, subsequently sampled by the spacecraft. A broad search algorithm is developed to construct feasible itineraries, which considers Venus and Earth gravity assist sequences. High-quality solutions are then differentially corrected to be continuous using high-fidelity dynamics. The complete methodology is applicable to other outer-planet moons, notably Enceladus. The outbound VEEGA option is found to significantly reduce launch C_3 compared to alternate options. The characteristics and quality of the solutions exhibit substantial variation over the 12-year period of Jupiter. Nevertheless, a variety of optimized results are computed with C_3 as low as 16.0 km~2/sec~2, re-entry speed well below that of the Stardust capsule, and flight times of 9 to 15 years.
机译:计算弹道轨迹,这将使样品返回任务对欧罗巴,而不捕获,降序或降落。低成本的使命概念利用自由回报轨迹,该轨迹还涉及欧罗巴的紧密飞行。在欧罗巴附近,一个小型冲击力将动力学影响冰冷的月亮并产生羽流,随后被航天器采样。开发了一种广泛的搜索算法以构建可行的行程,其考虑金星和地球重力辅助序列。然后使用高保真动态差异校正高质量解决方案。完整的方法适用于其他外部行星卫星,特别是Enceladus。与替代选项相比,发现出站VEEGA选项显着减少启动C_3。解决方案的特点和质量在Jupiter的12年期间表现出实质性变化。然而,各种优化的结果用C_3计算为低至16.0 km〜2 / sec〜2,再进入速度远低于星尘胶囊的速度,以及9至15年的飞行时间。

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