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首页> 外文期刊>Journal of geophysical research. Planets >Origin of the Medusae Fossae Formation, Mars: Insights from a synoptic approach
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Origin of the Medusae Fossae Formation, Mars: Insights from a synoptic approach

机译:母体"窝的形成起源,火星:从天气的方法见解

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摘要

The geologic origin of the Medusae Fossae Formation (MFF) has remained a mystery despite three decades of research. To better constrain its formation, an in-depth analysis of observations made in the literature was combined with a new survey of over 700 Mars Orbiter Camera narrow-angle images of the MFF to identify morphologic characteristics and material properties that define this formation as a whole. While previous work has identified clear agreement on some characteristics, our analysis identifies yardangs, collapse features, and layering as pervasive features of the MFF. Whereas collapse features and layering may implicate several different physical and chemical processes, yardangs provide vital information on material properties that inform about mechanical properties of the MFF lithology. Aspect ratios of megayardangs range from 3:1 to 50:1, and slope analyses reveal heights of up to 200 m with cliffs that are almost vertical. Other yardangs show lower aspect ratios and topographic profiles. These characteristics coupled to the presence of serrated margins, suggest that MFF lithology must be of weakly to heavily indurated material that lends itself to jointing. The characteristics and properties of the MFF are inconsistent with those of terrestrial pyroclastic fall deposits or loess, but are in common with large terrestrial ignimbrites, a hypothesis that explains all key observations with a single mechanism. Yardang fields developed in regionally extensive ignimbrite sheets in the central Andes display morphologic characteristics that correlate with degree of induration of the host lithology and suggest an origin by pyroclastic flow for the MFF.
机译:地质母体"窝的起源形成(MFF)尽管仍然是个谜三十年的研究。它的形成,深入的分析观察在文学的总和一项新的调查的超过700火星轨道器照相机窄角MFF识别的图像形态学特征和材料属性定义这个形成作为一个整体。虽然以前的工作已经确定清楚协议在一些特点,我们的分析确定了白龙堆,崩溃的特性分层MFF的普遍特征。而崩溃的特性和分层涉及多个不同的物理和化学过程中,白龙堆提供至关重要的信息关于机械材料属性通知MFF岩性的属性。megayardangs从3:1到50:1和斜率分析揭示的高度200米悬崖,几乎是垂直的。显示较低的纵横比和地形配置文件。出现锯齿状的边缘,表明MFF弱的岩性必须严重变硬的材料,适用于节理。MFF的特征和属性与地面的不一致火成碎屑下降存款或黄土,但与大型陆地熔结凝灰岩,a假设解释了所有关键的观察与一个单一的机制。在地区广泛的熔结凝灰岩床单的安第斯山脉中部显示形态学特征这与硬化的程度主机岩性和建议的来源火成碎屑流MFF。

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