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Genetic mechanisms of deep-water massive sandstones in continental lake basins and their significance in micro-nano reservoir storage systems: A case study of the Yanchang formation in the Ordos Basin

机译:大陆湖泊盆地深水大型砂岩的遗传机制及其在微纳米储层储存系统中的意义 - 以鄂尔多斯盆地延长地区为例

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摘要

Based on field geological surveys of two deep-water sedimentary outcrops in the Yanchang formation of the Ordos Basin, X-ray diffraction analysis, elemental geochemical analysis, and polarizing microscope observations were conducted to investigate the causes of various sedimentary structures inside the massive sand bodies from deep-water debris flow. A genesis model of deep-water debris-flow sandstone is established: during the handling of the mass transport complexes in the basin slope, the soft sandy sedimentary layer with relatively strong shear resistance tears the soft muddy sedimentary layer with weak shear resistance and pulls various clumps inside the muddy layer. Finally, debris-flow massive sandstones with rich sedimentary structures are formed. Through argon ion polishing and field emission scanning electron microscopy, the debris-flow sandstones mainly develop micron-scale pores, and the pore radius is mainly distributed in the range of 1-8 mu m. The sedimentary rocks from the semi-deep lake to deep lake facies only have a small number of nano-scale pores, and the pore radius is distributed between 20 and 120 nm.
机译:基于鄂尔多斯盆地的延长形成两种深水沉积露头的现场地质调查,进行了X射线衍射分析,元素地球化学分析和偏振显微镜观察,以研究米砂体内各种沉积结构的原因从深水碎片流动。建立了深水泥石流砂岩的成因模型:在盆地坡度的大规模运输配合物处理过程中,软砂沉积层具有相对强烈的剪切电阻,具有弱剪切抗性和拉动各种柔软泥泞的沉积层在泥泞的层内丛生。最后,形成具有丰富沉积结构的泥石流大量砂岩。通过氩离子抛光和现场发射扫描电子显微镜,碎屑砂岩主要显影微米尺寸孔,孔半径主要分布在1-8亩。来自半深湖到深湖面的沉积岩仅有少量的纳米尺度孔,孔径半径分布在20至120nm之间。

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