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首页> 外文期刊>Planetary and space science >TUBS-M and TUBS-T based modular Regolith Simulant System for the support of lunar ISRU activities
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TUBS-M and TUBS-T based modular Regolith Simulant System for the support of lunar ISRU activities

机译:基于TUBS-M和TUBS-T的模块化Regolith模拟系统,用于支持月球ISRU活动

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摘要

Rising international interest in scientific and commercial Moon exploration programs require cost-efficient logistical solutions regarding raw- and construction materials for a permanent residence on our Earth's satellite. Lunar regolith soil is the most abundant resource; its technical exploitation would comprise a major leap forward towards the construction of infrastructure on the Moon. Current efforts dedicated to the technological exploitation of lunar regolith require terrestrial analogue materials (simulants). Such simulants are indispensable for Earth-based development and testing of hardware later used on the lunar surface (e.g. rovers or scientific equipment) as well as technologies that will process regolith directly. However, available simulants are material-specific which limits their use to tests for site specific projects on the lunar surface. At TU Braunschweig, we are actually developing a regolith simulant system that allows the flexible adaptation of regolith properties to meet the technological testing requirements. That planned process for the production of customized simulants is presented in the paper. The TUBS-M and TUBS-T simulants are based on basaltic and anorthositic bedrock, respectively. These two basic simulant components, which match the two dominant lunar surface rock types, are now fully developed. Their characteristics in terms of mineralogy, chemical composition, and physical properties are presented in this paper. Currently, methods for the production of other important components of the regolith (glasses, agglutinates) are in development and additional minerals will be analyzed, which will enable the production of highly customized simulants for in-situ resource utilization (ISRU) purposes beginning in 2020.
机译:国际上对科学和商业月球勘探计划的兴趣日益高涨,因此需要在地球卫星上永久居住的具有成本效益的后勤解决方案,涉及原材料和建筑材料。月球长石土壤是最丰富的资源。它的技术开发将是迈向月球基础设施建设的重大飞跃。当前致力于月球巨石技术开发的努力需要地面模拟材料(模拟物)。这种模拟物对于基于地球的开发和测试后来用于月球表面的硬件(例如漫游车或科学设备)以及将直接处理重排石的技术是必不可少的。但是,可用的模拟物是特定于材料的,这限制了它们在月球表面特定地点项目的测试中的使用。在不伦瑞克工业大学,我们实际上正在开发一种粉煤灰模拟系统,该系统可灵活调整粉煤灰的性能,以满足技术测试的要求。本文介绍了用于生产定制模拟物的计划过程。 TUBS-M和TUBS-T模拟物分别基于玄武质和无脊椎动物基岩。与两种主要月球表面岩石类型匹配的这两个基本模拟成分现已完全开发。本文介绍了它们在矿物学,化学组成和物理性质方面的特征。目前,正在开发生产碎石的其他重要组成部分(玻璃,凝集物)的方法,并将分析其他矿物,这将使自2020年起可为现场资源利用(ISRU)目的生产高度定制的模拟物。

著录项

  • 来源
    《Planetary and space science》 |2020年第1期|104747.1-104747.9|共9页
  • 作者

  • 作者单位

    TU Braunschweig Inst Space Syst Hermann Blenk Str 23 D-38108 Braunschweig Germany;

    TU Braunschweig Inst Particle Technol Volkmaroder Str 5 D-38104 Braunschweig Germany;

    Fed Inst Technol ETH Zurich Inst Geochem & Petrol Clausiusstr 25 CH-8092 Zurich Switzerland;

    Geol Survey Norway Leiv Eiriksons Vei 39 N-7040 Trondheim Norway;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Regolith; Simulant; In-situ resource utilization; ISRU; Lunar exploration; Resources; Lunar base;

    机译:雷哥利斯模拟原地资源利用;ISRU;月球探索;资源;月球基地;

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