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Stratigraphic architecture and hierarchy of fluvial overbank splay deposits

机译:Stratibaphic建筑和河流上银行戏剧阶层的层次结构

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摘要

Splay deposits represent an important sand-prone component of the otherwise fine-grained stratigraphic record of fluvial overbank systems. This work presents a hierarchical approach to the classification and palaeoenvironmental interpretation of ancient preserved splay deposits supported by the analysis of the stratigraphic architecture of 11 exhumed examples from the Jurassic Morrison Formation and the Cretaceous Mesaverde Group (western USA) and analysis of the morphology of splays from nine modern fluvial systems. A hierarchical arrangement of splay deposits is proposed, categorized into lithofacies, beds, elements and complexes. Recognition criteria for each tier of the hierarchy include identification of bounding surfaces, thinning and fining trends of splay elements and complexes, and palaeocurrent variability. Progradational and compensational stacking trends control the stratal architecture of splay deposits, and these are influenced by the following factors: (1) the rate of local accommodation generation, which influences the erosive power of floodwaters and whether splay elements are laterally offset owing to compensational stacking; (2) the nature of the topographic confinement of the floodplain; (3) the preservation potential linked to migration direction of channel. Splay bodies can contribute volume to fluvial reservoirs and may form significant connectors that link otherwise isolated primary channel bodies, thereby enhancing reservoir connectivity.
机译:Splay Proposits代表了氟储物系统的其他细粒度地层记录的重要砂易发器组件。这项工作提出了分类的分类方法,古代保留的SPLAY存款分析,通过分析了侏罗纪莫里森组和米斯瓦茨(Western Westware)的11个挖掘实例的地层建筑和分析的地层建筑和分析了人口的形态分析来自九种现代河流系统。提出了SPLAY沉积物的分层排列,分为岩型,床,元素和复合物。层次结构的每个层的识别标准包括识别张平表面,稀释和罚款的展开元素和复合物的趋势,以及古代电流变化。促进和补偿堆叠趋势控制了SPLAY沉积物的划分结构,这些级数受以下因素的影响:(1)当地住宿生成率,这影响了洪水的腐蚀力,并且由于补偿堆叠而横向偏移。 ; (2)洪泛区地形禁闭的性质; (3)与渠道的迁移方向相关的保护势。 Splay体可以贡献到河流储存器的体积,并且可以形成链接否则隔离主沟道体的重要连接器,从而提高了储层连接。

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  • 来源
    《Journal of the Geological Society》 |2019年第4期|共21页
  • 作者单位

    Univ Leeds Sch Earth &

    Environm Fluvial &

    Eolian Res Grp Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Earth &

    Environm Fluvial &

    Eolian Res Grp Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Earth &

    Environm Fluvial &

    Eolian Res Grp Leeds LS2 9JT W Yorkshire England;

    Univ Leeds Sch Earth &

    Environm Fluvial &

    Eolian Res Grp Leeds LS2 9JT W Yorkshire England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;
  • 关键词

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