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歧口凹陷沙一段页岩纳-微米尺度孔隙结构分形特征及控制因素

Fractal characteristics and controlling factors of nanometer-to micrometer-scale pore structure of shale in Es1 of Qikou Sag

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【作者】 官全胜韩国猛刘小平曾海伟高欢欢闫拓孙侨阳龚艳春孙彪刘天贾高航

【Author】 GUAN Quansheng;HAN Guomeng;LIU Xiaoping;ZENG Haiwei;GAO Huanhuan;YAN Tuo;SUN Qiaoyang;GONG Yanchun;SUN Biao;LIU Tian;JIA Gaohang;State Key Laboratory of Petroleum Resources and Engineering, China University of Petroleum,Beijing;College of Geosciences, China University of Petroleum,Beijing;Dagang Oilfield Company,PetroChina;

【通讯作者】 刘小平;

【机构】 油气资源与工程全国重点实验室中国石油大学(北京)中国石油大学(北京)地球科学学院中国石油大港油田公司

【摘要】 系统表征纹层型页岩孔隙结构对于准确认识页岩油富集机理与优选有利甜点区具有关键意义。本研究选取渤海湾盆地黄骅坳陷歧口凹陷沙河街一段(沙一段)纹层型页岩样品,联合CO2与N2吸附实验,从纳米至微米尺度揭示其孔隙类型与分形结构特征。结果显示:(1)研究层段TOC为0.83%~6.72%,Ro为0.52%~0.72%,纹层类型主要包括有机质-碳酸盐纹层、富黏土-长英质纹层以及长英质-有机质-碳酸盐复合纹层;(2)孔隙类型以粒间孔、晶间孔、溶蚀孔、有机质孔和纹层微裂缝为主,孔径主要集中在0.3~40 nm,介孔对孔体积贡献最大,微孔和介孔共同控制比表面积;(3) FHH分形分析显示,D1(2.061 1~2.487 0)主要表征有机质相关微孔吸附界面的表面粗糙度,D2(2.508 8~2.750 6)主要表征石英-碳酸盐矿物骨架控制的介孔—宏孔孔喉结构复杂度;(4)页岩油甜点评价不能仅依赖TOC或单一孔型参数,而应同时关注高D1所指示的吸附储集能力与高D2所指示的渗流连通能力。主控因素分析表明,歧口凹陷沙一段纹层型页岩并非单一“有机孔主导”储集模式,而是表现为有机质微孔吸附体系与矿物骨架孔道体系协同控制的双重孔隙结构。研究成果可为研究区纹层型页岩甜点评价、开发井部署和压裂主攻层段优选提供定量地质参考,也可为其他盆地页岩油的勘探开发地质评价提供思路与方法借鉴。

【Abstract】 Systematic characterization of the pore structure of laminated shale is essential for accurately understanding shale oil enrichment mechanisms and identifying favorable sweet spots. In this study, laminated shale samples from the first member of the Shahejie Formation(Es1) in Qikou Sag, Huanghua Depression, Bohai Bay Basin, were investigated, and combined CO2 and N2 adsorption experiments were conducted to reveal pore types and fractal structural characteristics from the nanometer to micrometer scale. The results indicate that:(1) TOC is 0. 83% –6. 72%; Ro is 0. 52% –0. 72%, and laminae types mainly include organic matter-carbonate laminae, clay-rich-felsic laminae, and felsic-organic matter-carbonate composite laminae.(2) Pore types are dominated by intergranular pores, intercrystalline pores, dissolution pores, organic matter pores, and laminar microfractures, and pore diameters are mainly concentrated in 0. 3 –40 nm; mesopores contribute the most to pore volume, and micropores and mesopores jointly control specific surface area.(3) FHH fractal analysis indicates that D1(2. 061 1–2. 487 0) primarily characterizes the surface roughness of organic matter-related micropore adsorption interfaces, and D2(2. 508 8 – 2. 750 6) mainly represents the complexity of mesopore-macropore throat structures controlled by quartz-carbonate mineral frameworks.(4) The evaluation of shale oil sweet spots should not rely solely on TOC or a single poretype parameter but should simultaneously focus on the adsorption storage capacity indicated by high D1 and percolation connectivity indicated by high D2. Analysis of controlling factors indicates that the laminated shale in the Es1 of Qikou Sag does not exhibit a single “organic pore-dominated” storage model but rather a dual pore structure synergistically controlled by an organic matter micropore adsorption system and a mineral framework pore throat system. The research results provide quantitative geological references for sweet spot evaluation, development well deployment, and optimization of key fracturing intervals in the laminated shale within the study area and offer insights and methodological references for geological evaluation of shale oil exploration and development in other basins.

【基金】 国家自然科学基金项目“陆相页岩中方沸石成因机制及其对页岩油富集的影响——以渤海湾盆地沧东凹陷为例(编号:42572167)”“辉绿岩侵入作用对陆相页岩油源储系统的影响机理研究——以苏北盆地为例(编号:42072150)”;中国石油天然气集团有限公司项目“陆相页岩油开发优化技术研究与试验(编号:2023ZZ15YJ03)”部分研究成果
  • 【文献出处】 中国海上油气 ,China Offshore Oil and Gas , 编辑部邮箱 ,2026年03期
  • 【分类号】P618.13
  • 【下载频次】49
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