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利用太空电梯的月球运输方案。

Lunar transportation scenarios utilising the Space Elevator.

作者信息

Engel Kilian A

机构信息

Technical University of Munich, Germany.

出版信息

Acta Astronaut. 2005 Jul-Oct;57(2-8):277-87. doi: 10.1016/j.actaastro.2005.03.016.

DOI:10.1016/j.actaastro.2005.03.016
PMID:16010760
Abstract

The Space Elevator (SE) concept has begun to receive an increasing amount of attention within the space community over the past couple of years and is no longer widely dismissed as pure science fiction. In light of the renewed interest in a, possibly sustained, human presence on the Moon and the fact that transportation and logistics form the bottleneck of many conceivable lunar missions, it is interesting to investigate what role the SE could eventually play in implementing an efficient Earth to Moon transportation system. The elevator allows vehicles to ascend from Earth and be injected into a trans-lunar trajectory without the use of chemical thrusters, thus eliminating gravity loss, aerodynamic loss and the need of high thrust multistage launch systems. Such a system therefore promises substantial savings of propellant and structural mass and could greatly increase the efficiency of Earth to Moon transportation. This paper analyzes different elevator-based trans-lunar transportation scenarios and characterizes them in terms of a number of benchmark figures. The transportation scenarios include direct elevator-launched trans-lunar trajectories, elevator launched trajectories via L1 and L2, as well as launch from an Earth-based elevator and subsequent rendezvous with lunar elevators placed either on the near or on the far side of the Moon. The benchmark figures by which the different transfer options are characterized and evaluated include release radius (RR), required delta v, transfer times as well as other factors such as accessibility of different lunar latitudes, frequency of launch opportunities and mission complexity. The performances of the different lunar transfer options are compared with each other as well as with the performance of conventional mission concepts, represented by Apollo.

摘要

在过去几年里,太空电梯(SE)概念在太空领域开始受到越来越多的关注,不再被广泛视为纯粹的科幻小说。鉴于人们重新对在月球上可能长期存在人类产生兴趣,以及运输和物流构成许多可设想的月球任务的瓶颈这一事实,研究太空电梯最终在实施高效的地月运输系统中可能发挥的作用很有意思。该电梯允许飞行器从地球上升并被注入地月转移轨道,而无需使用化学推进器,从而消除重力损失、空气动力损失以及对高推力多级发射系统的需求。这样一个系统因此有望大幅节省推进剂和结构质量,并能极大提高地月运输效率。本文分析了不同的基于电梯的地月运输方案,并根据一些基准数据对它们进行了描述。运输方案包括直接由电梯发射的地月转移轨道、经由L1和L2的电梯发射轨道,以及从地球电梯发射并随后与位于月球近侧或远侧的月球电梯会合。用于描述和评估不同转移选项的基准数据包括释放半径(RR)、所需的速度增量、转移时间以及其他因素,如不同月球纬度的可达性、发射机会频率和任务复杂性。将不同月球转移选项的性能相互比较,以及与以阿波罗任务为代表的传统任务概念的性能进行比较。

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