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Effective Processing of GPR Data to Investigate the Sub-Space

机译:有效处理GPR数据以调查子空间

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摘要

Much of the inhabited terrestrial underground consists of sands, clays, and gravel mixed with stones, tree roots, construction debris, and of course, utilities. While the sub-spaces on Moon and Mars do not yet contain utilities or construction debris, they are made up of material that could provide in-situ resources essential for sustaining human colonies on a short and long-term basis. For example, caves will protect humans from solar rays outside the safety of a lunar lander. Knowing about their existence and entry points, however, requires detailed information about the subsurface. Also, buildings need to be constructed on solid ground instead of covered over “sinkholes”. Ice and oxygen or helium-rich ores will be other highly desirable substances. Ground penetrating radar promises to be an excellent technology to for supporting the search for such in-situ resources. It is being successfully used to investigate the terrestrial sub-space for various purposes. This paper will discuss its various applications, a novel data processing method applied to experimental tests performed in beach sand.
机译:许多有人居住的地下都由沙子,粘土和砾石组成,里面混有石头,树根,建筑残骸,当然还有公用事业。尽管月球和火星上的子空间尚不包含实用程序或建筑残骸,但它们由可以提供就地和长期维持人类殖民地必不可少的就地资源的材料组成。例如,洞穴将保护人类免受月球着陆器安全之外的太阳射线的伤害。但是,要知道它们的存在和切入点,就需要有关地下的详细信息。此外,建筑物必须建在坚固的地面上,而不是覆盖在“污水池”上。冰和氧或富含氦的矿石将是其他非常理想的物质。探地雷达有望成为支持这种现场资源搜索的一项出色技术。它已成功用于各种目的的地面子空间研究。本文将讨论其各种应用,一种应用于海滩沙中的实验测试的新型数据处理方法。

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