木星-卡利斯托系统周期轨道扩展族

IF 1.3 4区 工程技术 Q2 ENGINEERING, AEROSPACE
Hongwei Yang, Limin Qin, Shuang Li, Junpo Niu, Haiyang Li
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引用次数: 0

摘要

周期轨道在太空任务中应用广泛,是我们理解圆周受限三体问题复杂动态系统的基础。然而,仍有许多潜在的周期轨道族尚未被定位和计算。本研究旨在为木星-卡利斯托系统生成一些新的、鲜为人知的周期轨道族,从而获得一个扩展数据库。提供了计算和延续周期轨道族的数值方法。深入探讨了五个分岔图,并找到了 108 个周期轨道族。其中,59 个族延续到整个族。20 个非对称族也进入了我们的视野。此外,还介绍并讨论了一些新发现和特定族的特征。还确定了在木卫三扰动下出现的同步共振周期轨道。扩大后的周期轨道系有望为今后卡利斯托探索任务的设计提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Expanded Families of Periodic Orbits for the Jupiter–Callisto System
Periodic orbits are widely used in space missions and are fundamental for us to understand the complex dynamic system of circular restricted three-body problem. However, there are still many potential families of periodic orbits that have not been located and computed. This study aims to generate some new and less-known families of periodic orbits for the Jupiter–Callisto system to obtain an extended database. The numerical methods for the computation and continuation of periodic orbit families are provided. Five bifurcation diagrams are explored in depth, and 108 periodic orbit families are located. Of these, 59 families are continued to the entire families. Twenty asymmetrical families also come into view. New discoveries and the characteristics of several particular families are presented and discussed. Synodic resonant periodic orbits appearing under the perturbation of Ganymede are also identified. The expanded families of periodic orbits are expected to provide a reference for future Callisto exploration mission design.
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来源期刊
Journal of Spacecraft and Rockets
Journal of Spacecraft and Rockets 工程技术-工程:宇航
CiteScore
3.60
自引率
18.80%
发文量
185
审稿时长
4.5 months
期刊介绍: This Journal, that started it all back in 1963, is devoted to the advancement of the science and technology of astronautics and aeronautics through the dissemination of original archival research papers disclosing new theoretical developments and/or experimental result. The topics include aeroacoustics, aerodynamics, combustion, fundamentals of propulsion, fluid mechanics and reacting flows, fundamental aspects of the aerospace environment, hydrodynamics, lasers and associated phenomena, plasmas, research instrumentation and facilities, structural mechanics and materials, optimization, and thermomechanics and thermochemistry. Papers also are sought which review in an intensive manner the results of recent research developments on any of the topics listed above.
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