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首页> 外文期刊>Journal of geophysical research. Planets >Ancient Martian Aeolian Sand Dune Deposits Recorded in the Stratigraphy of Valles Marineris and Implications for Past Climates
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Ancient Martian Aeolian Sand Dune Deposits Recorded in the Stratigraphy of Valles Marineris and Implications for Past Climates

机译:古老的火星风成沙丘存款水手号峡谷的地层学记录过去的气候和影响

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摘要

Aeolian sediment transport, deposition, and erosion have been ongoing throughout Mars's history. This record of widespread aeolian processes is preserved in landforms and geologic units that retain important clues about past environmental conditions including wind patterns. In this study we describe landforms within Melas Chasma, Valles Marineris, that occur in distinct groups with linear to crescentic shapes, arranged with a characteristic wavelength; some possess slope profiles analogous to modern sand dunes yet show evidence for lithification. Based on the features' dimensions, asymmetry, and spatial patterns relative to modern equivalents, we interpret these landforms to be two classes of aeolian bedforms: decameter-scale megaripples and sand dunes. The presence of superposed erosional features and depositional units indicates that these landforms were cemented and likely ancient. Melas paleodunes are found atop Hesperian-aged layered deposits, but we estimate them to be younger, likely lithified in the Amazonian period. Although a range of degradation was observed, some paleodunes are >10 m tall and maintain steep lee sides (>25°), an uncommon scenario for terrestrial examples as other geologic processes lead to dune obliteration. The preserved paleobedform geometries are largely consistent with those of modern aeolian indicators, suggesting no major shifts in wind regime or contributing boundary conditions. Finally, we propose that their appearance and context require sequential periods of dune migration, stabilization following catastrophic burial, cementation, differential erosion, exposure, and burial. The presence of wholly preserved duneforms appears to be more common on Mars compared to the Earth and may signal something important about Martian landscape evolution.
机译:风成沉积物运移、沉积和在火星的侵蚀一直持续历史。流程是保存在地形和地质单位,保留重要的线索环境条件包括风模式。在这项研究中我们描述地形在米拉水手号峡谷,峡谷,发生在不同的组织与线性新月形的形状,安排与特征波长;斜率概要文件类似于现代沙丘说明岩化。“维度、不对称和空间特性模式相对于现代的等价物,我们解释这些地貌两类风成bedforms: decameter-scale大波痕沙丘。特征和沉积单元显示这些地貌是巩固和可能古代。米拉paleodunes Hesperian-aged之上分层的存款,但我们估计年轻,可能在亚马逊岩化的时期。观察到,一些paleodunes > 10米高保持陡峭李(> 25°),一个少见场景为陆地的例子地质过程导致沙丘闭塞。保存paleobedform几何图形在很大程度上符合现代风成的指标,表明没有重大变化政权或边界条件。最后,我们建议他们的外观和上下文需要连续时间的沙丘迁移,稳定后灾难性的葬礼、胶结、微分侵蚀,曝光,埋葬。保存duneforms似乎更常见火星比地球,可能信号一些重要的关于火星景观进化。

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