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

机译:使用热旱丝和紧凑型流体的月球勘探部分A:幸存年夜的基础设施

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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:最近的任务确认了在永久阴影的陨石坑和其他地方的月球上存在水和其他挥发物。非易失性的月球资源可能代表基础设施或制造原料的重要额外价值。在丰富浓度,分布和可恢复性方面对农历资源的表征仅限于原位Apollo样本和扩展遥感数据库。本文介绍了一种基于热磁能储存热量瓦迪概念的简单月球表面基础设施支持的月球资源勘探方法,并使用配备适当的勘探传感器和演示资源提取能力的紧凑型流体。基于改进的月球重新旋转的太阳能 - 热能的储存和检索,热湿度是工程的热量和功率源。因为热旱虫在农历黑暗时期保持紧凑的勘探升温,因此流浪者能够在月球表面而不是几周内存活数月,而不是需要承担繁重的能力。由此产生的较低成本,长寿的流浪者代表了潜在的范式突破,以外的地面勘探生产力,并将能够生产详细资源地图。整合基于资源地图内容的资源处理和其他技术演示将为工程经济研究提供信息,可以定义月球的真正资源潜力。一旦这一资源潜力被定量地理解,人类可能会以经济上的声音目标返回月球,包括在哪里,到达时要做什么,以及带来什么。

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