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Structural controls on mechanical compaction within sandstones: An example from the Apsheron Peninsula, Azerbaijan

机译:砂岩内部机械压实的结构控制:以阿塞拜疆阿普歇隆半岛为例

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Mechanical compaction of sand-rich reservoirs usually occurs during shallow burial and involves the rearrangement of framework grains and the ductile deformation of soft lithoclasts. The reservoir quality (porosity and permeability) of some Neogene sandstones of the South Caspian Basin has, however, been dramatically reduced by mechanical compaction involving extensive grain-fracturing (i.e. porosity collapse). These sandstones were probably susceptible to pervasive grain-fracturing because they were buried rapidly and experienced compressional deformation prior to reaching 80 °C. Consequently, they did not undergo quartz cementation and were therefore exposed to high stresses while they were extremely weak. Grain-size and structural position are also important controls on the distribution of grain fracturing in the onshore analogue in the Apsheron Peninsula. Microstructural analysis confirms that susceptibility to distributed grain-fracturing increases with increasing grain-size. Structural position has also an important impact on the distribution of porosity collapse. In particular, sandstones within the hinges of folded sections have undergone much more extensive grain-fracturing than within the surrounding area; the increased stresses in this structural position have enhanced distributed grain-fracturing and subsequent deformation band development.
机译:富砂储层的机械压实通常发生在浅埋期间,涉及骨架颗粒的重新排列和软破石碎石的韧性变形。但是,南里海盆地一些新近纪砂岩的储层质量(孔隙度和渗透率)由于涉及广泛的颗粒破裂(即孔隙塌陷)的机械压实作用而大大降低。这些砂岩可能很容易发生普遍的晶粒破裂,因为它们被迅速埋藏并在达到80°C之前经历了压缩变形。因此,它们没有经历石英胶结,因此在它们非常脆弱的同时也承受着高应力。粒度和结构位置也是对阿普歇隆半岛陆上类似物中谷物裂缝分布的重要控制。显微组织分析证实,随着晶粒尺寸的增加,对分布晶粒破裂的敏感性增加。结构位置对孔隙塌陷的分布也有重要影响。特别是,折叠部分的铰链内的砂岩比周围区域的沙粒破裂要广泛得多。在该结构位置上增加的应力增强了分布的晶粒断裂和随后的形变带发展。

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