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陆相页岩内物质转移对储集性的调控机制

滕建彬 韩箫屿 张鹏飞 李博 李军亮 苗卓伟 张顺 朱丽鹏

石油实验地质2026,Vol.48Issue(1):99-114,16.
石油实验地质2026,Vol.48Issue(1):99-114,16.DOI:10.11781/sysydz2026010099

陆相页岩内物质转移对储集性的调控机制

Regulation mechanisms of material transfer within continental shale on reservoir properties:

滕建彬 1韩箫屿 1张鹏飞 2李博 1李军亮 1苗卓伟 1张顺 1朱丽鹏1

作者信息

  • 1. 页岩油气富集机理与高效开发全国重点实验室,山东 东营 257015||中国石化 胜利油田分公司 勘探开发研究院,山东 东营 257015||中国石化 页岩油气勘探开发重点实验室,山东 东营 257015||中国石化 胜利油田分公司 油气储层微观机理与评价实验室,山东 东营 257015
  • 2. 页岩油气富集机理与高效开发全国重点实验室,山东 东营 257015||中国石化 页岩油气勘探开发重点实验室,山东 东营 257015||中国石化 胜利油田分公司 油气储层微观机理与评价实验室,山东 东营 257015||中国石化 胜利油田分公司,山东 东营 257000
  • 折叠

摘要

Abstract

Continental shale oil and gas are important areas for increasing oil and gas reserves and production in China.However,traditional macroscopic-to-core scale studies are insufficient to reveal the relationship between material migration within laminae and pore evolution.Taking the continental shale from the upper submember of the fourth member of the Paleogene Shahejie Formation in the Niuzhuang Subsag,Dongying Sag,Jiyang Depres-sion,Bohai Bay Basin as the study object,this study employed microscopic analytical methods such as X-ray diffraction,argon ion polishing-field emission scanning electron microscopy-energy spectrum spectroscopy,and rock thin-section microscopic observation to reveal the diagenetic evolution characteristics and the regulatory mechanisms of material transfer on reservoir properties.The study found that the formation of reservoir spaces in the strongly overpressured shale of the upper Es4 submember in the Niuzhuang Subsag was synergistically controlled by"overpressured fluid-diagenetic minerals".During the formation period of cone-in-cone and columnar-fibrous calcite in the early to middle diagenetic stage,a negative shift of δ18O by 3.56%-5.47‰ was observed,showing a distinct response to the overpressure increase of 52.14-76.17 MPa.The homogenization temperatures of yellow-blue-white fluorescent hydrocarbon inclusions and associated brine inclusions indicated that hydrocarbon entrapment occurred earlier than the overpressured brine.The phenomenon of salinity inversion reflected the process of salt supply from feldspar dissolution and salt consumption by carbonate cementation,confirming the pressurizing effect of hydrocarbon generation on pore fluids.Overpressured fluids constructed a nano-micron pore-fracture network through the dual mechanisms of"calcite dissolution-recrystallization throat expansion"and"clay mineral transformation-quartz cementation support".In the overpressured fluid environ-ment,four types of calcite with different origins exhibited a δ18O shift path of"syngenetic micrite → diagenetic recrystallization → diagenetic cone-in-cone and columnar-fibrous calcite → fracture filling",leading to the preferential exsolution of 12C and 16O within the self-enclosed system and synchronous negative shifts in δ13C and δ18O.Organic acids preferentially dissolved micritic calcite to form pores smaller than 10 nm,and the recrystalliza-tion of calcite into a columnar-fibrous sparry structure expanded pore diameters to 20-50 nm.Hydrocarbon fluids in shale tended to accumulate at the edges of grains such as calcite and dolomite,forming micron-scale intergranular fractures.Silica derived from clay mineral transformation preferentially nucleated and precipitated in these areas where microfractures and pores developed,crystallizing into authigenic quartz crystals with particle sizes of 5-30 μm and euhedral-subhedral morphologies,thus exerting a synergistic effect of supporting,stiffening,and pore preser-vation.Different from the traditional model of silica filling pores,this mechanism enables authigenic quartz precipi-tation from clay-derived silica in intergranular fractures,thereby enhancing the stability of microscopic pores and fractures in the reservoir.

关键词

页岩油/成岩演化/优质储层/形成机制/济阳坳陷/渤海湾盆地

Key words

shale oil/diagenetic evolution/high-quality reservoir/formation mechanism/Jiyang Depression/Bohai Bay Basin

分类

能源科技

引用本文复制引用

滕建彬,韩箫屿,张鹏飞,李博,李军亮,苗卓伟,张顺,朱丽鹏..陆相页岩内物质转移对储集性的调控机制[J].石油实验地质,2026,48(1):99-114,16.

基金项目

国家科技重大专项(2024ZD1400105、2024ZD1405101)和中国石化科技部项目(KLP25024)联合资助. (2024ZD1400105、2024ZD1405101)

石油实验地质

1001-6112

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