火星盖尔陨石坑卡洛琳·舒梅克地层的形状沉积物

IF 2 4区 地球科学 Q1 GEOLOGY
B. Cardenas, J. Grotzinger, M. Lamb, K. Lewis, C. Fedo, A. Bryk, W. Dietrich, N. Stein, Madison Turner, G. Caravaca
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引用次数: 4

摘要

火星早期的环境历史记录在火星的沉积岩记录中。自2012年以来,好奇号火星车一直在攀登盖尔陨石坑中央的夏普山,对那里暴露的沉积地层进行详细观察。迄今为止所研究的岩石所代表的主要沉积环境是一个多年生湖泊,以穆雷组的泥岩和砂岩透镜体为代表。在这里,我们报告了Carolyn Shoemaker组露头的沉积学研究,该组位于Murray组的地层之上。我们根据沉积结构、摄影测量数据测量的地层几何形状和侵蚀形态,解释了Carolyn Shoemaker组的格拉斯哥和默库成员暴露的地层,以代表古代冲积和海岸线环境中的河坝。从湖泊到河流沉积环境的转变记录了沿海河流的淤积和退化,进入了以前的盖尔湖系统范围。这可能是由于气候驱动的盆地水平衡变化导致湖泊随着时间的推移而缩小,或者是海岸线演变中的局部三维特征,例如在河道转换后形成新的沉积叶状体。
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Barform deposits of the Carolyn Shoemaker formation, Gale crater, Mars
The early environmental history of Mars is encoded in the planet's record of sedimentary rocks. Since 2012, the Curiosity rover has been ascending Mount Sharp, Gale crater's central mound, making detailed observations of sedimentary strata exposed there. The primary depositional setting represented by the rocks examined thus far has been a perennial lake, represented by the mudstones and sandstone lenses of the Murray formation. Here, we report on the sedimentology of outcrops examined in the Carolyn Shoemaker formation, which sits stratigraphically above the Murray formation. We interpret strata exposed in the Glasgow and Mercou members of the Carolyn Shoemaker formation to represent river bars in ancient alluvial and shoreline settings based on sedimentary structures, stratal geometries measured from photogrammetric data, and erosional morphology. The transition from a lacustrine to a fluvial depositional setting records the aggradation and progradation of coastal rivers into what was previously the extent of the Gale lake system. This may have occurred due to the shrinking of the lake over time due to climate-driven changes in the basin water balance, or local three-dimensionality in shoreline evolution, such as the formation of a new sedimentary lobe following a channel switch.
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来源期刊
CiteScore
3.80
自引率
5.00%
发文量
50
审稿时长
3 months
期刊介绍: The journal is broad and international in scope and welcomes contributions that further the fundamental understanding of sedimentary processes, the origin of sedimentary deposits, the workings of sedimentary systems, and the records of earth history contained within sedimentary rocks.
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