黏土沉积微结构特征及其沉积环境【中深层复杂油气储层研究】
- 收稿日期:
2022-11-06
- 网络出版日期:
2023-09-16
摘要: 作为非常规油气资源的重要组成,页岩油气资源的基础研究逐渐受到重视。黏土沉积微结构对页岩页理、纹层结构产生影响,进而影响页岩的储集能力和开发效果。黏土颗粒除受物理作用影响,还发生化学吸附和絮凝,形成絮凝程度不一的絮凝物。絮凝物的基本单元是板状颗粒或域,进一步形成絮或链,最终在电荷作用下形成纸牌屋结构。在沉积阶段,影响絮凝程度的物理—化学因素包括黏土颗粒的粒径、颗粒含量、外部水动力强度与水流性质、气候、电解质浓度、离子种类、酸碱值、有机质等。对黏土沉积微结构开展物理—化学影响因素研究,结合火山碎屑、页岩碎屑、泥质内碎屑、粪便颗粒等泥岩颗粒集合体其它组构的分析,可以对泥页岩沉积环境进行识别和描述。目前,该项研究尚显不足,尚未建立完善的地质模型;包括絮凝物在内的泥岩颗粒集合体组构的定量研究不足,尚未很好地使用大数据技术;我国西部海相黑色页岩沉积微环境及其内部集合体特征研究有待深化;研究技术方法略显单一。对黏土沉积微结构进行定性和定量描述,并开展泥岩颗粒集合体形成环境解释,能够实现复杂多变的沉积微环境精细刻画,深化对湖泊、海洋等泥页岩沉积环境分异特征的认识,进而揭示高精度范围内页岩储层品质的差异,为页岩地质和工程“甜点”的选取和开发奠定基础。
Microstructure characteristics and sedimentary environments of clay sediments
- Received Date:
2022-11-06
- Available Online:
2023-09-16
Abstract: As an important component of unconventional oil and gas resources, the basic research of shale oil and gas resources has gradually attracted attention. Microstructures of clay sediments have an impact on shale foliation and lamination structure, thus influencing the shale reservoir capacity and development effect. In addition to being affected by physical action, clay particles also undergo chemical adsorption and flocculation to form floccules with varying degrees. The basic unit of floccule is tabular particles or domains, further forming flocs or chains, and finally forming a card house structure under the action of electric charge. In the sedimentary stage, the physical and chemical factors affecting the flocculation include particle size, particle content, external hydrodynamic strength and flow properties, climate, electrolyte concentration, ion type, pH value, organic matter, etc. By studying the physical and chemical factors affecting the microstructures of clay sediments and analyzing the other components of mudstone composite particles such as volcanic rock fragments, shale lithics, muddy intraclasts and fecal pellets, the sedimentary environments of mudstone and shale can be identified and described. This study is still in its infancy and a perfect geological model has not been established; The quantitative research of floccules and other components of mudstone composite particles is insufficient, and big data technology has not been used well; The study on the sedimentary micro-environment and internal association characteristics of marine black shale in western China needs to be deepened; The research technology and method are slightly single. Based on the qualitative and quantitative description of microstructures of clay sediments and demonstration of sedimentary environments of mudstone composite particles, it can achieve fine description of complex and changeable sedimentary micro-environment, deepen understanding of the differentiation characteristics of sedimentary environments of shale such as lakes and seas, and further reveal the differences in shale reservoir quality within the high-precision range, laying a foundation for the selection and development of geology and engineering "desserts" in shale.