地球外基础设施的设计、生产和运营进展

H. Bier, A. Cervone, A. Makaya
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引用次数: 0

摘要

在不久的将来,将人类送上月球和火星需要适当的基础设施来支持并随后维持人类活动。这包括抵御环境条件、产生能源、促进流动性和通信的基础设施。这种基础设施的建设旨在利用当地资源,减少对地球供应的使用。必要的基础设施、设备和硬件的建立和维护涉及到适当的制造技术的发展,这可以最大限度地利用当地资源。这些技术的基础可以是将当地材料加工成建筑材料,从当地材料中提取有用的元素或与从地球带来的材料相结合。所需的制造技术解决了持续人类活动的一系列需求,从较小规模的制造项目到大型建筑结构。这种结构的设计与许多空间系统的工程挑战有关,从准确定义所有资源预算(质量、体积、功率、数据)到设计利用这些资源的所有子系统之间的接口。考虑到其特殊的质量和体积限制,特别是在采用可重复使用概念的情况下,用于将所需材料(以及最终的机组人员)从地球运送到最终地点的行星际航天器可能需要针对这一特定应用进行特别设计。基础设施系统设计中涉及的其他工程方面包括选择适当的发电方法和确定辐射环境,以便为栖息地提供足够的屏蔽。本期Spool CpA #4探讨了设计、工程、建造、运营和维护地球外基础设施的挑战。
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Advancements in Designing, Producing, and Operating Off-Earth Infrastructure
Sending humans to the Moon and Mars in the near future requires appropriate infrastructure to support and subsequently sustain human activities. This includes infrastructure to shield from environmental conditions, generate energy, and facilitate mobility and communication. Construction of such infrastructure aims to use in-situ resources and reduce the use of supplies from Earth. The establishment and maintenance of the required infrastructure, equipment, and hardware involves the development of adequate manufacturing techniques, which can enable maximal use of the local resources. Those techniques can be based on processing of local materials into construction materials, extraction of useful elements from local materials or in combination with materials brought from Earth. The required manufacturing techniques address the range of needs for sustained human activities, from smaller scale manufactured items to large built structures. The design of such structures is associated with a number of space systems’ engineering challenges, ranging from the accurate definition of all resource budgets (mass, volume, power, data) to the design of the interfaces between all subsystems making use of these resources. The interplanetary spacecraft used to transport the required materials (and eventually, crew) from Earth to the final site would probably need to be designed ad-hoc for this specific application, given its peculiar mass and volume constraints, especially in case a reusable concept is adopted. Other engineering aspects involved in the design of the infrastructure systems include the selection of an appropriate power generation approach and the definition of the radiation environment in order to provide sufficient shielding to the habitats. This Spool CpA #4 issue investigates challenges of designing, engineering, constructing, operating, and maintaining off-Earth infrastructure.
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