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首页> 外文期刊>Journal of geophysical research. Planets >From Lake to River: Documenting an Environmental Transition Across the Jura/Knockfarril Hill Members Boundary in the Glen Torridon Region of Gale Crater (Mars)
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From Lake to River: Documenting an Environmental Transition Across the Jura/Knockfarril Hill Members Boundary in the Glen Torridon Region of Gale Crater (Mars)

机译:从湖泊到河流:记录盖尔陨石坑(火星)格伦托里登地区汝拉/诺克法里尔山成员边界的环境转变

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摘要

Between January 2019 and January 2021, the Mars Science Laboratory team explored the Glen Torridon (GT) region in Gale crater (Mars), known for its orbital detection of clay minerals. Mastcam, Mars Hand Lens Imager, and ChemCam data are used in an integrated sedimentological and geochemical study to characterize the Jura member of the upper Murray formation and the Knockfarril Hill member of the overlying Carolyn Shoemaker formation in northern GT. The studied strata show a progressive transition represented by interfingering beds of fine-grained, recessive mudstones of the Jura member and coarser-grained, cross-stratified sandstones attributed to the Knockfarril Hill member. Whereas the former are interpreted as lacustrine deposits, the latter are interpreted as predominantly fluvial deposits. The geochemical composition seen by the ChemCam instrument show K_2O-rich mudstones (~1-2 wt.%) versus MgO-rich sandstones (>6 wt.%), relative to the average composition of the underlying Murray formation. We document consistent sedimentary and geochemical data sets showing that low-energy mudstones of the Jura member are associated with the K-rich endmember, and that high-energy cross-stratified sandstones of the Knockfarril Hill member are associated with the Mg-rich endmember, regardless of stratigraphic position. The Jura to Knockfarril Hill transition therefore marks a significant paleoenvironmental change, where a long-lived and comparatively quiescent lacustrine setting progressively changes into a more energetic fluvial setting, as a consequence of shoreline regression due to either increased sediment supply or lake-level drop.
机译:2019年1月至2021年1月,火星科学实验室团队讨论了格伦Torridon盖尔陨石坑(GT)地区(火星)粘土矿物的轨道检测。Mastcam,火星的手透镜成像仪,ChemCam数据用在一个集成的沉积学的和吗地球化学研究的侏罗统成员上穆雷和Knockfarril形成山的上覆卡罗琳鞋匠北部形成GT,研究地层显示一个逐步过渡为代表指状交错层的细粒度,隐性泥岩的侏罗山脉成员和粗粒度,cross-stratified砂岩归因于Knockfarril希尔成员。解释为湖积物,后者解释为主要河流吗存款。ChemCam仪器显示K_2O-rich泥岩(~ 1 - 2wt. %)和MgO-rich砂岩(> 6 wt. %),相对于平均的组成潜在的穆雷的形成。一致的沉积和地球化学数据集表明低能泥岩的侏罗山脉成员与K-rich endmember,高能cross-stratified砂岩Knockfarril希尔的成员相关联与Mg-rich endmember,不管地层的位置。山因此标志着一个重要的过渡古变化,长寿相对静止的湖泊设置逐步改变成一个更有活力河流环境中,由于海岸线回归由于增加沉积物供应或粗略下降。

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