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THE LUNAR SPACE ELEVATOR

机译:LUNAR空间电梯

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This paper examines lunar space elevators, a concept originated by the lead author, for lunar development. Lunar space elevators are flexible structures connecting the lunar surface with counterweights located beyond the L1 or L2 Lagrangian points in the Earth-moon system. A lunar space elevator on the moon's near side, balanced about the L1 Lagrangian point, could support robotic climbing vehicles to release lunar material into high Earth orbit. A lunar space elevator on the moon's far side, balanced about L2, could provide nearly continuous communication with an astronomical observatory on the moon's far side, away from the optical and radio interference from the Earth. Because of the lower mass of the moon, such lunar space elevators could be constructed of existing materials instead of carbon nanotubes, and would be much less massive than the Earth space elevator. We review likely spots for development of lunar surface operations (south pole locations for water and continuous sunlight, and equatorial locations for lower delta-V), and examine the likely payload requirements for Earth-to-moon and moon-to-Earth transportation. We then examine its capability to launch large amounts of lunar material into high Earth orbit, and do a top-level system analysis to evaluate the potential payoffs of lunar space elevators.
机译:本文研究了主要作者提出的月球空间电梯这一月球发展概念。月球太空升降机是将月球表面与对重放置在月球系统中L1或L2拉格朗日点之外的柔性结构。月球近侧的月球太空升降机在L1拉格朗日点附近保持平衡,可以支撑机器人攀登车辆将月球物质释放到高地球轨道上。月球远端的月球太空电梯,平衡在L2左右,可以与月球远端的天文观测台保持几乎连续的通讯,而不受地球的光学和无线电干扰。由于月球的质量较低,因此这种月球太空升降机可以用现有材料代替碳纳米管来构造,并且其质量要比地球太空升降机小得多。我们审查了可能发展登月表面的地点(水和连续日照的南极位置,以及较低的V值的赤道位置),并检查了地对月和月对地运输的可能有效载荷要求。然后,我们检查其将大量月球物质发射到高地球轨道的能力,并进行顶层系统分析,以评估月球太空升降机的潜在收益。

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