月球地质轨道飞行器概念,从轨道上研究月球不规则海斑块和熔岩管

IF 3.1 2区 物理与天体物理 Q1 ENGINEERING, AEROSPACE
Petr Brož , Sam Poppe , Kimberly Sofge , Martin Stárek , Ricardo Gomes , Petr Boháček , Akos Kereszturi , Anna Łosiak , Francesco Sauro , Ernst Hauber , Martin Divoký , Pavel Trojánek , Michael Písařík , Tomáš Kohout , Henrik Hargitai , Roman Bohovic , Jaan Viru , Mihkel Pajusalu , Leonardo Carrer , Lorenzo Bruzzone , Ricardo Pozzobon
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引用次数: 0

摘要

月球地质轨道飞行器(LUGO)任务旨在研究月球表面和地下的地质特征,这些特征在以前的任务中尚未成为专门的目标,目的是了解月球的热演化,为人类探索和未来的永久定居提供支持。LUGO的目标是澄清两个重要的知识空白:1)表征不规则海斑(IMPs),位于月球近侧的神秘火山地貌,并提供对其年龄和形成过程的见解;2)探测熔岩管并描述它们的一般形状,以评估它们作为未来宇航员栖息地的潜力。这样的任务将导致发现关于imp的改进年代,垂直结构和浅层地下管道系统,以及几个熔岩管的存在,发生和物理特征。为了实现科学目标,该任务将携带仪器载荷,包括频率在15 ~ 30 MHz之间的探地雷达,空间尺度优于25 cm /像素的窄角相机,光谱范围在500 ~ 1650 nm的高光谱相机,以及使用1550 nm单光子探测的光探测和测距传感器。由于LUGO能够从其轨道上覆盖月球表面的很长一段区域,因此它也可能具有其他地质目标的特征,比如底部断裂的陨石坑。此外,LUGO将作为未来任务的技术蓝图,有助于揭示月球表面的地质和形态特征与月球浅层地壳的地质结构和地层之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
LUnar Geology Orbiter concept to study lunar Irregular Mare Patches and lava tubes from orbit
The LUnar Geology Orbiter (LUGO) mission is proposed to study surface and subsurface geological features on the Moon that have not yet been the dedicated target of previous missions, with the goal of understanding its thermal evolution and supporting human exploration and future permanent settlements. The objectives of LUGO aim to clarify two important knowledge gaps: 1) to characterize Irregular Mare Patches (IMPs), enigmatic volcanic landforms located on the near side of the Moon, and to provide insights into their age and formational processes; and 2) to detect lava tubes and characterize their general shapes to evaluate their potential as future astronaut habitats. Such a mission would lead to discoveries regarding the improved dating, vertical structure, and shallow subsurface plumbing system of IMPs, as well as the existence, occurrence, and physical characteristics of several lava tubes. To achieve the scientific objectives, the mission is proposed to carry an instrument payload consisting of 1) a ground-penetrating radar with a frequency between 15 and 30 MHz, 2) a narrow-angle camera with a spatial scale better than 25 cm per pixel, 3) a hyperspectral camera with a spectral range from 500 to 1650 nm, and 4) a light detection and ranging sensor using single-photon detection at 1550 nm. LUGO may also characterize other geological targets, such as floor-fractured craters, thanks to its ability to cover long swaths of the lunar surface from its orbit. Furthermore, LUGO will serve as a technological blueprint for future missions that will help uncover the relationship between the geological and morphological characteristics at the lunar surface and the geological structure and stratigraphy of the shallow lunar crust.
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来源期刊
Acta Astronautica
Acta Astronautica 工程技术-工程:宇航
CiteScore
7.20
自引率
22.90%
发文量
599
审稿时长
53 days
期刊介绍: Acta Astronautica is sponsored by the International Academy of Astronautics. Content is based on original contributions in all fields of basic, engineering, life and social space sciences and of space technology related to: The peaceful scientific exploration of space, Its exploitation for human welfare and progress, Conception, design, development and operation of space-borne and Earth-based systems, In addition to regular issues, the journal publishes selected proceedings of the annual International Astronautical Congress (IAC), transactions of the IAA and special issues on topics of current interest, such as microgravity, space station technology, geostationary orbits, and space economics. Other subject areas include satellite technology, space transportation and communications, space energy, power and propulsion, astrodynamics, extraterrestrial intelligence and Earth observations.
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