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Lunar Prospecting Using Thermal Wadis and Compact Rovers Part A: Infrastructure for Surviving the Lunar Night

机译:使用热瓦迪斯和紧凑型漫游车进行月球勘测A部分:度过月夜的基础设施

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Recent missions have confirmed the existence of water and other volatiles on the Moon, both in permanently-shadowed craters and elsewhere. Non-volatile lunar resources may represent significant additional value as infrastructure or manufacturing feedstock. Characterization of lunar resources in terms of abundance concentrations, distribution, and recoverability is limited to in-situ Apollo samples and the expanding remote-sensing database. This paper introduces an approach to lunar resource prospecting supported by a simple lunar surface infrastructure based on the Thermal Wadi concept of thermal energy storage and using compact rovers equipped with appropriate prospecting sensors and demonstration resource extraction capabilities. Thermal Wadis are engineered sources of heat and power based on the storage and retrieval of solar-thermal energy in modified lunar regolith. Because Thermal Wadis keep compact prospecting rovers warm during periods of lunar darkness, the rovers are able to survive months to years on the lunar surface rather than just weeks without being required to carry the burdensome capability to do so. The resulting lower-cost, long-lived rovers represent a potential paradigm breakthrough in extra-terrestrial prospecting productivity and will enable the production of detailed resource maps. Integrating resource processing and other technology demonstrations that are based on the content of the resource maps will inform engineering economic studies that can define the true resource potential of the Moon. Once this resource potential is understood quantitatively, humans might return to the Moon with an economically sound objective including where to go, what to do upon arrival, and what to bring along.
机译:最近的任务已经证实,在永久阴影的环形山和其他地方,月球上存在水和其他挥发物。非易失性月球资源可能代表基础设施或制造原料的重大附加值。就丰度,分布和可采性而言,月球资源的表征仅限于原位阿波罗样品和扩展的遥感数据库。本文介绍了一种基于简单月球基础设施的月球资源勘探方法,该方法基于Thermal Wadi热能存储概念,并使用配备有合适的勘探传感器和示范资源提取功能的紧凑型流动车。热瓦迪斯是经过设计的热能和动力源,其基础是在修改后的月球体中存储和检索太阳热能。由于热瓦迪斯公司在紧凑的探月船在月球黑暗期间保持温暖,因此这些月球能够在月球表面生存数月至数年,而不是仅仅数周而无需承担繁重的任务。由此产生的成本更低,寿命更长的漫游者代表着在地外勘探生产力方​​面的潜在范例突破,并将能够制作详细的资源图。将资源处理与其他基于资源图内容的技术演示相结合,将为可以确定月球真正资源潜力的工程经济学研究提供参考。一旦对这种资源潜力进行了定量了解,人类可能会以经济上合理的目标回到月球,包括去哪里,到达时要做的事情以及带来的事情。

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