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首页> 外文期刊>Journal of Petroleum Science & Engineering >Sedimentary and diagenetic control on the porosity and permeability in Lower-Middle Jurassic reservoirs, northern margin of Tianshan, China
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Sedimentary and diagenetic control on the porosity and permeability in Lower-Middle Jurassic reservoirs, northern margin of Tianshan, China

机译:下侏罗世储层孔隙率和渗透性的沉积和成岩性探讨,天山北边缘

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The Lower-Middle Jurassic sandstone reservoirs in the northern margin of Tianshan are considered a significant area of tight sandstone gas. Sedimentary, petrologic and petroleum geologic criteria have been surveyed in six sections along continuous outcrops and cores. Thin sections and scanning electron microscope (SEM) images combined with mercury injection techniques are used to restore the evolution of pore-throat structures. The Lower-Middle Jurassic sandstones are mainly low-porosity and extra-low-permeability reservoirs. The results of constant-rate mercury injection reveal that the distribution pattern of the pore radii is not related to permeability, whereas the throat radii increase with increasing permeability. The microcosmic heterogeneity in reservoirs is dominated by a high proportion of narrow throats. An analysis of the reservoirs' physical properties and diagenesis indicates that the quality of the Lower-Middle Jurassic sandstone reservoirs is controlled by sedimentary environment, eodiagenesis, and diagenesis that developed in different sedimentary microfacies. The pore-throat structures can be divided into six types. In coal-bearing formations that are rich in organic matter, compaction decreases the quality of the reservoirs, and the reaction of early-formed kaolinite with remnant, undissolved K-feldspar may cause diagenetic illite to block the throats. At the bottom of the fluvial channels in braided river delta plains or at the top of mouth bars in braided river delta fronts, eodiagenesis can inhibit compaction via early basal carbonate cementation, and the unfavorable reservoirs are extra-low-porosity and extra-low-permeability sandstones. Infiltration-related clay is widespread. Smectite coats covered grains, and kaolinite filled remnant intergranular pores as aggregations, which increased the heterogeneity of the pore-throat structures. Authigenic chlorite coats protect intergranular pores from compaction and cementation by quartz overgrowths. Reservoirs with medium to low porosity and medium to low permeability come from the middle-upper portions of fluvial channels in braided river delta plains of the Xishanyao Formation or from the upper part of sub-water fluvial channels in the Badaowan Formation and the Sangonghe Formation or mouth bars in braided river delta fronts of the Sangonghe Formation. In near-surface settings, such as the bottom of fluvial channels or the top of mouth bars in braided river deltas, infiltration-related dissolution leads to more intergranular dissolution pores. However, the development of the highest-quality reservoirs, i.e., medium porosity and medium permeability, is limited. Other types exist between these end members in quality. Due to good sorting and low matrix content, the barrier bars of the Toutunhe Formation and the Sangonghe Formation with good lateral connectivity in the lacustrine facies are widespread in the northern margin of Tianshan and are considered to be high-quality reservoirs.
机译:天山北边缘中下侏罗索斯砂岩储层被认为是砂岩气体的重要面积。沉积,浮石和石油地质标准已在连续露头和核心的六个部分进行调查。薄截面和扫描电子显微镜(SEM)与汞注射技术相结合的图像用于恢复孔喉部结构的演变。中下侏罗纪砂岩主要是低孔隙率和低渗透水库。恒定汞液注射的结果表明,孔径半径的分布图与渗透性无关,而咽喉半径随着透气性的增加而增加。储层中的微观异质性以高比例的窄喉部支配。对储层物理性质和成岩作用的分析表明,中下侏罗腊族砂岩储层的质量由沉积环境,eodiagenesis和成岩作用控制,这些沉积物微缩放。孔隙结构可分为六种类型。在富含有机物质的煤形成中,压实降低了储层的质量,以及早期的高岭石与残余,未溶解的K-FeldSpar的反应可能导致成岩型illite阻塞喉咙。在编织河三角洲平原或编织河三角洲前端的嘴巴顶部的河口底部,eodiagenesis可以通过早期基础碳酸盐胶结抑制压实,不利的水库是低孔隙度和超低的渗透性砂岩。渗透相关的粘土是广泛的。蒙脱石涂层覆盖谷物,高岭石填充残留的骨髓孔作为聚集,这增加了孔喉部结构的异质性。 Atheagenic Chlerite涂层通过石英过度生长保护骨髓孔免受压实和粘合的影响。中孔隙率和介质到低渗透率的储层来自毛泽民形成的编织河三角洲的河流通道的中上部,或者来自鲍瓦湾地区的亚水河流渠道的上部和僧孔地层或嘴巴在编织河三角洲的僧伽河形成前。在近表面设置中,例如河河底部或编织河Δ中的嘴巴顶部,渗透相关的溶解导致更多的晶间溶解孔隙。然而,最高质量的储层,即中孔隙度和中渗透率的发展是有限的。这些类型在这些最终成员之间存在的其他类型。由于良好的分类和低矩阵含量,Toutunhe形成的屏障棒和湖泊各界中具有良好的横向连接的侧壁形成在天山的北边缘普及,被认为是高质量的水库。

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