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首页> 外文期刊>Journal of geophysical research. Planets >Phenomenology of soil erosion due to rocket exhaust on the Moon and the Mauna Kea lunar test site
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Phenomenology of soil erosion due to rocket exhaust on the Moon and the Mauna Kea lunar test site

机译:月亮和冒纳凯阿河登月试验场上的火箭排气造成的土壤侵蚀现象学

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The soil‐blowing phenomena observed in the Apollo lunar missions have not previously been described in the literature in sufficient detail to elucidate the physical processes and to support the development of physics‐based modeling of the plume effects. In part, this is because previous laboratory experiments have used overly simplistic model soils that fail to produce many of the phenomena seen in lunar landings, some of which therefore went unrecognized. Here, the Apollo descent videos, terrain photography, and ascent videos are interpreted with the assistance of field experiments using a more complex regolith. Rocket thruster firings were performed upon the tephra of a lunar test site on Mauna Kea in Hawaii. This tephra possesses embedded rocks, large fractions of gravel and dust, some cohesion, and natural geological lamination. This produced more realistic plume phenomenology. The relevant phenomena include the relationship of dust liberation with overall soil erosion rate, terrain bed forms created by the plume, dust tails associated with the exhumation and blowing of rocks, bed load transport, the removal of discrete layers of soil hypothesized to be the stratigraphic units corresponding to impact events, the total mass of ejected soil during a landing, and the brightening of the regolith around the landing site. This analysis provides insight into the erosion processes and nature of the regolith. This paper also synthesizes theory, experiment, simulation, and observational data to produce a clearer picture of the physical processes of lunar soil erosion.
机译:以前没有在文献中对阿波罗登月任务中观察到的吹土现象进行足够详细的描述,以阐明物理过程并支持基于羽流效应的基于物理学的建模的发展。在某种程度上,这是因为先前的实验室实验使用的模型土壤过于简单,无法产生许多在月球着陆中发现的现象,因此其中一些现象未被发现。在这里,阿波罗血统视频,地形摄影和上升视频在野外实验的帮助下使用更复杂的重石块进行解释。火箭推进器射击是在夏威夷莫纳克亚(Mauna Kea)的一个月球试验场进行的。该特非拉拥有埋藏的岩石,大量的砾石和灰尘,具有一定的内聚力以及自然的地质分层。这产生了更逼真的羽状现象。相关现象包括尘埃释放与总体土壤侵蚀率的关系,羽流形成的地形床形式,与岩石的挖掘和吹拂相关的尘埃尾巴,床层负荷输送,假定为地层的离散土壤层的去除对应于撞击事件的单位,着陆过程中喷出的土壤的总量以及着陆点周围的软膏的亮度。该分析提供了对侵蚀过程和硬质岩性质的洞察。本文还综合了理论,实验,模拟和观测数据,以更清晰地了解月球土壤侵蚀的物理过程。

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