首页> 外文期刊>Australian Journal of Earth Sciences >The origin and alteration of calcite cement in tight sandstones of the Jurassic Shishugou Group, Fukang Sag, Junggar Basin, NW China: implications for fluid-rock interactions and porosity evolution
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The origin and alteration of calcite cement in tight sandstones of the Jurassic Shishugou Group, Fukang Sag, Junggar Basin, NW China: implications for fluid-rock interactions and porosity evolution

机译:侏罗纪石黄油群紧密砂岩中方解石水泥的起源和改变,福康萧条,南威尔州北尚山脉:对流体岩相互作用和孔隙率发展的影响

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The Shishugou Group, which consists of Middle Jurassic Toutunhe Formation and Upper Jurassic Qigu Formation, is currently an important hydrocarbon exploration target in the Fukang Sag of Junggar Basin, China. The Shishugou Group sandstones experienced a complex diagenetic history with deep burial (3600-5800 m) to develop low-ultralow porosity and permeability reservoir with some high-quality reservoirs found in the tight sandstones owing to the reservoir heterogeneity. This integrated petrographic and geochemical study aims to unravel the origin and alteration of calcite cement in the Shishugou Group sandstones and predict fluid-rock interaction and porosity evolution. The Shishugou Group sandstones (Q(43.8)F(7.4)R(48.8)) have a dominant calcite cement with strong heterogeneity forming in two generations: poikilotopic, pore-filling masses that formed at an early diagenetic stage and isolated rhombs or partial grain replacements that formed at a late stage. The Shishugou Group, which are lacustrine sediments formed in low-medium salinity lake water in a semiarid-arid climatic environment, provided the alkaline diagenetic environment needed for precipitation of chlorite and early calcite cements in early diagenesis. The Ca2+ of the pore-filling calcite cements was sourced from weathering or dissolution of volcanic clasts in the sediment source or during transport in under oxidising conditions. The O-18(V-PDB) and C-13(V-PDB) values of calcite were significantly controlled by distance from the top unconformity and underlying coal-bearing stratum with carbon sourced from atmospheric CO2, and organic matter. The early carbonate cement inhibited burial compaction producing intergranular pore spaces with enhanced reservoir properties by late dissolution under acidic conditions. Anhydrite cement reflects reaction of organic acid and hydrocarbon with the sandstones and is associated with fluid migration pathways. The fluid-rock interactions and porosity evolution of the tigh
机译:其中包括中侏罗士汤汤的组成和上下侏罗纪齐豪组成的石朱古集团目前是中国Junggar盆地阜康凹陷的重要烃勘探目标。 Shishugou Group Sandstones经历了复杂的成岩历史,深埋(3600-5800米),在储层异质性的情况下,在紧密砂岩中发现低超高孔隙度和渗透水库。这种综合的岩型和地球化学研究旨在解开石黄油群砂岩中方解石水泥的起源和改变,并预测流体岩相互作用和孔隙率进化。 Shishugou Group Sandstones(Q(43.8)F(7.4)r(48.8))具有主要的方解石水泥,两代内形成强烈的异质性:Poikiolopic,孔隙填充质量,形成在早期成岩阶段和分离的rhombs或部分粒子在晚期形成的替代品。 Shishugou组是在半干旱气候环境中在低中型盐度湖水中形成的湖泊沉积物,提供了在早期成岩作用中降水和早期方解石水泥所需的碱性成岩环境。孔填充方解石水泥的Ca 2 +来自沉积物源中的风化或溶解火山裂解物或在氧化条件下运输过程中的溶解。方解石的O-18(V-PDB)和C-13(V-PDB)值通过与来自大气CO 2的碳源的碳源和有机物质的碳含量显着控制方解石的距离。早期碳酸盐水泥抑制埋葬压实在酸性条件下通过晚期溶解,通过增强的储层性能产生晶状体孔隙空间。 Anhydry水泥反映有机酸和烃与砂岩的反应,与流体迁移途径有关。流体岩相互作用和孔隙率进化

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