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Development and Testing of a Lunar Prospecting Drill (LPD) to Search for Water-Ice

机译:用于探冰的探月钻机(LPD)的开发和测试

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There are at least two approaches in searching for water-ice in lunar regolith: indirect and direct. In the indirect method, neutron spectrometer can be used to capture epithermal and thermal neutrons - signature of Hydrogen and hence possibly water. If a neutron spectrometer is integrated inside a drill string, as the drill penetrates subsurface it can determine water concentration at different layers. In the direct method, a sample is captured at depth and transferred to a Gas Chromatograph Mass Spectrometer (GCMS) for analysis. The indirect method is simpler as it does not require sample transfer, however the direct method provides higher fidelity data. This paper focuses on the direct method. The Lunar Prospecting Drill (LPD) has been tested in frozen NU-LHT-2M with 5wt% water and in dry NU-LHT-3M. The drill captured sample in 10 cm intervals, called bites. The mass of each bite varied from 20-40 grams for 5wt% simulant and from 10-20 grams for dry simulant. The drill will next be tested at lunar-like conditions of low temperature and vacuum at NASA GRC.
机译:在月球巨石中寻找水冰的方法至少有两种:间接方法和直接方法。在间接方法中,中子能谱仪可用于捕获超热和热中子-氢以及因此可能是水的信号。如果将中子能谱仪集成在钻柱内部,当钻具穿透地下时,它可以确定不同层的水浓度。在直接方法中,深度捕获样品并将其转移到气相色谱质谱仪(GCMS)中进行分析。间接方法更简单,因为它不需要样品转移,但是直接方法可提供更高的保真度数据。本文重点介绍直接方法。探月钻机(LPD)已在含有5wt%水的冷冻NU-LHT-2M和干燥NU-LHT-3M中进行了测试。钻头以10厘米的间隔捕获样本,称为咬伤。对于5wt%的模拟物,每口的质量为20-40克,对于干燥的模拟物为10-20克。接下来,将在NASA GRC的类似月球的低温和真空条件下对钻机进行测试。

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