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Energy requirements of a thermally processed ISRU radiation shield for a lunar habitat

机译:用于月经栖息地的热处理isru辐射屏蔽的能量要求

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The purpose of this study was to establish, on a first principles basis, the order of magnitude of energy requirements for a thermally processed, lunar regolith radiation shield constructed using an in-situ resource utilisation (ISRU) approach. This was done by developing a reference scenario habitat and using thermodynamic relationships and specific heat capacity expressions to determine the energy required to bring such a regolith volume up to sintering temperatures (c. 1,375 K). Once the energy requirements were developed some power system architectures were outlined conceptually and a nuclear power plant of c. 400 kW was suggested as a means to supply the necessary energy. This is well beyond current space nuclear applications. The study concludes that it is likely that the most efficient near-term solution is chemical processing of regolith, from an energy requirements perspective. The technology is also more mature and likely to be delivered on near term projects as it does not require such scaled-up power system architectures. Alternatively, bringing storm shelters up with the habitat to provide a means of weathering major solar events, and adding additional radiation protection to habitat quarters, possibly through a water blanket or similar mechanism, could provide a non-ISRU solution with current technology. However, in the longer term, the development of MW-scale power system architectures (fission, solar etc.), may permit a very large volume of material to be processed thermally for construction material, making a large, permanent human presence on the Moon more easily realisable.
机译:本研究的目的是在第一种原则基础上建立了用于使用原位资源利用(ISRU)方法构建的热处理的月球石油辐射屏蔽的能量要求的量级级。这是通过开发参考场景栖息地和使用热力学关系和特定的热容量表达来完成的,以确定使这种极象高容量达到烧结温度所需的能量(C.1,375 K)。一旦开发了能量要求,概念上概述了一些电力系统架构和C的核电站。 400 kW被建议作为提供必要能源的手段。这远远超出了当前空间核应用。这项研究得出结论,最有效的近期解决方案是从能源需求的角度来看高压性的化学加工。该技术也更加成熟,可能会在近期项目中提供,因为它不需要这种缩放电力系统架构。或者,将风暴带入栖息地,以提供一种风化的主要太阳能事件的手段,并将额外的辐射防护添加到栖息地区,可能通​​过水毯或类似机制,可以提供具有当前技术的非ISRU解决方案。但是,在长期内,MW级电力系统架构的发展(裂变,太阳能等),可以允许非常大量的材料用于施工材料,在月球上制作大,永久性人类存在更容易可实现。

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