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Impact of sequence stratigraphy, depositional facies, diagenesis and CO2 charge on reservoir quality of the lower cretaceous Quantou Formation, Southern Songliao Basin, China

机译:序列地层,沉积相,成岩作用和二氧化碳对南部松辽盆地南部储层质量的影响

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The fourth member of the Lower Cretaceous Quantou Formation in Southern Fuxin Uplift zone of the Southern Songliao Basin is typical tight oil reservoir which has recently been explored and produced. For effective exploration and development, the evaluation and control factors of the reservoir quality of the K(1)q(4) sandstones should be thoroughly studied. The study focused on the control of the combination of sequence stratigraphy, depositional fades and diagenesis on the reservoir quality, and identified the impact of CO2 charging, based on the core and thin section observation, XRD, SEM, fluid inclusion and isotope testing and analysis. The fourth member of the Lower Cretaceous Quantou Formation consists of lowstand system tracts (LST), transgressive system tracts (TST) and highstand system tracts (HST). The K(1)q(4) sandstones were mostly deposited in distributary channels and crevasse splays of a delta plain within the LST and TST, and underwater distributary channels and sheet sands of a delta front within the HST. The K(1)q(4) sandstones, mostly silt to medium grained, medium to well sorted, and are mostly lithic arkoses and feldspathic litharenites, have undergone significantly diagenetic alterations, such as compaction, quartz cementation, unstable grains (feldspar and volcanic fragments) dissolution, carbonate cementation and clay minerals cementation. The reservoir quality of the K(1)q(4) sandstones are poor with low porosity and permeability, showing variations among the different system tracts and depositional fades, and are influenced by the charging of CO2 and controlled by the combination of sequence stratigraphy, depositional fades and diagenesis. The sandstones with high reservoir quality are mostly deposited in high energy environments, including the (underwater) distributary channel sandstones, especially the LST distributary channel sandstones with the best reservoir quality among the LST, TST and HST sandstones, which can be ascribed to larger grain size and better sorting resulting in larger intergranular pore space after compaction, and less content of carbonate cements, illite and mixed-layer I/S, and more pore-lining chlorite and more effectively dissolution. The poor reservoir quality of sandstones from crevasse splay and sheet sand is due to the small grain size and bad sorting which resulted in extensive compaction and the resulting weak dissolution. The charging of CO2 has dual impact on the reservoir quality of the K(1)q(4) sandstones. The CO2 charging can induce the dissolution of unstable detrital grains and the precipitation of dawsonite. The former create new secondary pore space, while the latter occupy the intergranular pore space. The CO2 charging is harmful to the reservoir quality when the dawsonite content exceeds a threshold of 5%.
机译:南部南部南部阜新隆水区下白垩纪Quantou地层的第四个成员是典型的紧密石油储层,最近被探索和生产。为了彻底研究K(1)Q(4)砂岩的储层质量的评价和控制因素应彻底研究。该研究专注于控制序列地层,沉积淡化和成岩作用的组合,并确定CO2充电的影响,基于核心和薄剖视图,XRD,SEM,流体包容性和同位素测试和分析。下白垩纪Quantou地层的第四个成员包括划船(LST),过灾系统束(TST)和高级系统束(HST)。 K(1)Q(4)砂岩主要沉积在LST和TST中的分布通道和裂隙平原的裂缝,以及HST内的Δ正面的水下分配通道和薄片砂。 K(1)Q(4)砂岩,大多是淤泥到中粒,中等良好分类,并且大多是岩石的露天和长期性的石英,经历了显着的成岩作用改变,如压实,石英胶粘剂,不稳定的谷物(长石和火山片段)溶解,碳酸盐胶粘剂和粘土矿物质胶结。 K(1)Q(4)砂岩的储层质量较差,孔隙率低,渗透率低,显示不同系统束和沉积淡化的变化,并受到二氧化碳充电并由序列地层组合控制的影响,沉积淡化和成岩作用。具有高储层质量的砂岩主要沉积在高能量环境中,包括(水下)分配信道砂岩,特别是LST,TST和HST砂岩中具有最佳储层质量的LST分配信道砂岩,这可以归因于更大的谷物尺寸和更好地分类导致压实后的晶间孔隙较大,且碳酸盐水泥的含量较少,illite和混合层I / s,更少于孔隙氯酸盐和更有效的溶解。来自Crefasse Splay和Sheet Sand的砂岩的差的砂岩储存质量差是由于小的晶粒尺寸和差的分类,导致了大规模的压实和所产生的弱溶解。 CO2的充电对K(1)Q(4)砂岩的储层质量有双重影响。 CO2充电可以诱导不稳定的滴乳颗粒和道森矿沉淀的溶解。前者创造了新的次要孔隙空间,而后者占据了晶间孔隙空间。当Dawsonite含量超过5%的阈值时,CO2充电对储层质量有害。

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