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The ScanMars Subsurface Radar Sounding Experiment on AMADEE-18

机译:Amadee-18上的Scanmars地下雷达探测试验

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摘要

Terrestrial simulations for crewed missions are critically important for testing technologies and improving methods and procedures for future robotic and human planetary exploration. In February 2018, AMADEE-18 simulated a mission to Mars in the Dhofar region of Oman. During the mission, a field crew coordinated by the osterreichisches Weltraum Forum (OeWF) accomplished several experiments in the fields of astrobiology, space physiology and medicine, geology, and geophysics. Within the scientific payload of AMADEE-18, ScanMars provided geophysical radar imaging of the subsurface at the simulated landing site and was operated by analog astronauts wearing spacesuits during extra-vehicular activities. The analog astronauts were trained to operate a ground-penetrating radar instrument that transmits and then collects radio waves carrying information about the geological setting of the first few meters of the subsurface. The data presented in this work show signal returns from structures down to 4 m depth, associated with the geology of the investigated rocks. Integrating radar data and the analog astronauts' observations of the geology at the surface, it was possible to identify the contact between shallow sediments and bedrock, the local occurrence of conductive soils, and the presence of pebbly materials in the shallow subsurface, which together describe the geology of recent loose sediments overlying an older deformed bedrock. The results obtained by ScanMars confirm that subsurface radar sounding at martian landing sites is key for the geological characterization at shallow depths. The geologic model of the subsurface can be used as the basis for reconstructing palaeoenvironments and paleo-habitats, thus assisting scientific investigations looking for traces of present or past life on the Red Planet.
机译:用于营业任务的陆地模拟对于测试技术以及改进未来机器人和人类行星勘探的方法和程序是至关重要的。 2018年2月,Amadee-18在阿曼的Dhofar地区模拟了火星的任务。在使命期间,由Osterreichisches Weltraum Forum(OWF)协调的领域船员在天体学,空间生理和医学,地质和地球物理学领域完成了几个实验。在Amadee-18的科学有效载量内,Scanmars提供了在模拟着陆现场的地下表面的地球物理雷达成像,并通过模拟宇航员在超重活动期间佩戴SpaceSuits操作。模拟宇航员训练,以操作进行地面穿透雷达仪器,该雷达仪器传输,然后收集携带关于地下前几米的地质设置的信息的无线电波。本工作中所示的数据显示信号返回到4米深度的结构,与调查岩石的地质相关联。整合雷达数据和模拟宇航员对表面地质的观察,可以识别浅层沉积物和基岩之间的接触,导电土的局部发生,以及浅层地下的卵石材料,在一起描述近期较旧变形基岩的近期松散沉积物的地质。 Scanmars获得的结果证实,Martian着陆位点的地下雷达探测器是浅深度地质表征的关键。地下的地质模型可以用作重建古环境和古栖息地的基础,从而帮助科学调查寻找礼物或过去的生活痕迹。

著录项

  • 来源
    《Astrobiology》 |2020年第11期|1338-1352|共15页
  • 作者单位

    Ist Nazl Astrofis INAF Ist Astrofis & Planetol Spaziali IAPS Rome Italy;

    Univ Perugia Dipartimento Fis & Geol Perugia Italy;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mars; Analog; Field test; Geology; Radar;

    机译:火星;模拟;现场测试;地质;雷达;

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