一个逐渐独立和自我可持续的月球栖息地的任务概念概述

Apoorva Joshi, C. Korn, Michail Magkos, Yassin Amara, Abhishek Anil, Souktik Bhattacherjee, Sisinio Dargent de Vicente, Patrick Haffmans, Nicolas Heinz, Andrea Hinkel, Merve Karakas, A. Kolchin, V. Mani, Ilja Skrypnyk, Anne Stadtmüller
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引用次数: 0

摘要

在过去的十年中,通过宣布许多雄心勃勃的任务,如阿尔忒弥斯,人们对月球空间探索重新产生了兴趣。每年的空间站设计研讨会(SSDW)都要求学生和年轻的专业人员在并行工程环境中设计一个空间站概念。随着人们对月球的兴趣日益浓厚,今年的“月球可持续发展计划”围绕着一个自我可持续的月球栖息地展开。本文介绍了蓝色团队在SSDW 2021上的概念设计。高级月球操作和资源开采(AMORE)的概念是公私合作,旨在创建一个月球平台,作为人类探索和机器人原位资源利用(ISRU)的前哨站。AMORE提议的地点在月球南极的沙克尔顿陨石坑边缘附近。这个位置为科学和ISRU提供了机会,并提供了有利的阳光覆盖和热条件。地形为ISRU提供了一个天然的碎片屏障和存储优势。任务架构允许通过模块化圆顶结构、ISRU的初始优先级和可持续资源管理策略增加乘员规模。根据确定的系统需求,最初的配置设想了一个核心模块和两个模块结构,它们将作为温室或生活空间。基础组件的分阶段设计允许增加乘员规模容量的适当条件。温室模块的设计是为了提供所有必需的氧气和最需要的食物供应。这些模块采用轻型充气结构建造,而风化层外壳将提供辐射、热和微陨石保护。为了实现可靠的通信,提出了一种自定义中继网络——月地遥控遥测中继(LETTER)。任务架构分析包括在财政上利用任务的几种方法。其中包括月球表面的一系列服务,如深空任务的训练设施,向其他月球探险者租赁栖息地,以及进行科学和技术演示。在整个任务过程中,将使用各种各样的漫游者,在各个方面提供帮助。除此之外,一个可扩展的混合发电系统,利用丰富的阳光和核能,确保在整个任务寿命期间有足够的电力供应。本研究提出了月球基地的整体架构,提供了初步利用月球的方法。在这方面,任务概念主要基于已经存在或正在开发的技术。因此,AMORE提供了一种经济上和技术上可行的方法,以及人类在月球表面持续和可扩展的存在
本文章由计算机程序翻译,如有差异,请以英文原文为准。
AMORE - Mission concept overview for a progressively independent and self-sustainable lunar habitat
Throughout the last decade a renewed interest for lunar space exploration has been expressed through the announcements of many ambitious missions such as Artemis. Annually the Space Station Design Workshop (SSDW) tasks students and young professionals to design a space station concept in a con-current engineering environment. In line with the elevated interest on the Moon this year's SSDW was centred around a self-sustainable lunar habitat. This paper presents the conceptual design of Team Blue at the SSDW 2021. Advanced Moon Operations and Resource Extraction (AMORE) is conceptu-alized as a public-private cooperation for the creation of a lunar platform that acts as an outpost for human exploration and robotic In-situ Resources Utilization (ISRU). AMORE’s proposed location is near the rim of Shackleton Crater at the Lunar South Pole. This location provides opportunities in science and ISRU and favourable sun coverage and thermal conditions. The terrain offers a natural shield for debris and storage advantages for ISRU. The mission architecture allows for incremental crew size increase through a modular dome structure, an initial prioritization of ISRU and a sustainable resource management strategy. Based on the identified system requirements, the initial configuration envisions one core module and two modular structures that would serve as greenhouses or living spaces. The phasing of the base assembly is designed to allow for adequate conditions of an increasing crew size capacity. The greenhouse modules are designed to provide all required oxygen and most required food supply. The modules are constructed using lightweight inflatable structures, while a regolith shell will provide radiation as well as thermal and micrometeorite protection. For reliable communication, a cus-tom relay network named Lunar Earth Telecommand Telemetry Relay (LETTER) is proposed. The mis-sion architecture analysis includes several methods to financially utilize the mission. These include a range of services on the lunar surface such as training facilities for deep space missions, leasing habitats to other Moon explorers, and performing scientific and technological demonstrations. A variety of rovers will be used throughout the mission that will assist in various aspects. In addition to this, a scalable hybrid power generation system that utilizes the abundant sunlight and nuclear energy assures a suffi-cient power supply throughout the entire mission lifetime. This research presents a holistic architecture for a Moon base, which provides an approach to initially utilize the Moon. Within this context, the mission concept is primarily based on already existing or currently in-development technologies. Hence, AMORE offers an approach for a financially and technologically feasible as well as a continuous and expandable human presence on the lunar surface
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