中国石油勘探 ›› 2025, Vol. 30 ›› Issue (2): 79-98.DOI: 10.3969/j.issn.1672-7703.2025.02.007

• 石油地质 • 上一篇    下一篇

火山灰—咸化湖相混源富有机质细粒岩沉积特征与成岩相——以三塘湖盆地条湖—马朗凹陷二叠系芦草沟组二段为例

于淼1,2,高岗1,2,马强3,焦立新3,梁浩3,康积伦1,2,3,樊柯廷1,2,张伟3,梁辉3,徐雄飞1,2,3,范亮3   

  1. 1 中国石油大学(北京)地球科学学院;2 油气资源与工程全国重点实验室;3 中国石油吐哈油田公司勘探开发研究院
  • 出版日期:2025-03-14 发布日期:2025-03-14
  • 作者简介:于淼(1997-),男,陕西泾阳人,在读博士,现主要从事油气地质与勘探科研工作。地址:北京市昌平区中国石油大学(北京),邮政编码:102249。
  • 基金资助:
    中国石油吐哈油田公司对外合作项目(YJYHZC2022)。

Sedimentary characteristics and diagenetic phases of volcanic ash-saline lacustrine mixed-source organic-rich fine-grained rocks:a case study of the second member of the Permian Luocaogou Formation in theT iaohu and Malang Sags, Santanghu Basin

Yu Miao1,2,Gao Gang1,2,Ma Qiang3,Jiao Lixin3,Liang Hao3,Kang Jilun1,2,3,Fan Keting1,2,Zhang Wei3,Liang Hui3,Xu Xiongfei1,2,3, Fan Liang3   

  1. 1 College of Geosciences, China University of Petroleum; 2 National Key Laboratory of Petroleum Resources and Engineering; 3 PetroChina Tuha Oilfield Company
  • Online:2025-03-14 Published:2025-03-14

摘要: 三塘湖盆地条湖、马朗凹陷芦草沟组二段沉积期物源主要为空落火山灰和内源碳酸盐,这一特殊背景导致芦二段细粒岩优质储层成因机理十分复杂。基于岩石学和地球化学资料,对芦二段细粒岩沉积特征及成岩过程进行了系统研究。结果表明:岩性对芦二段对细粒岩物性、孔隙结构及流体可动性的控制作用十分微弱,不同岩性细粒岩在成岩过程中均可形成优质储层;除白云岩外,其余岩性细粒岩普遍富含有机质,其中凝灰岩和白云质凝灰岩主要发育蓝细菌,而绿藻在凝灰岩、白云质凝灰岩和凝灰质白云岩中均有发育,普遍发育的有机质在中成岩A期大量生烃,不仅改变了成岩环境,也对细粒岩储层中易溶矿物产生了有效且规模的溶蚀;压实作用是芦二段细粒岩致密化的主要因素,胶结作用对细粒岩储层质量影响较小,溶蚀作用是凝灰岩类优质储层形成的关键,白云化作用及期次有效改善了白云岩类储层的储集性能;依据不同岩性细粒岩溶蚀及白云化作用强度,将芦二段细粒岩成岩相划分为5类,其中强溶蚀弱白云化相、中等溶蚀中等白云化相为优势成岩相;通过Matlab随机森林法对成岩相进行了单井预测,进而明确其分布范围;研究结果不仅对于明确芦二段页岩油勘探的优势相带具有重要意义,也对研究这一特殊细粒岩的优质储层成因具有一定的启示作用。

关键词: 成岩相, 细粒岩, 咸化湖相, 富有机质, 芦草沟组, 三塘湖盆地

Abstract: The second member of the Lucaogou Formation in the Tiaohu and Malang Sags of the Santanghu Basin was primarily sourced from fallout volcanic ash and endogenous carbonates during its depositional period. This unique setting has resulted in a highly complex formation mechanism for high-quality fine-grained rock reservoirs. Based on petrographic and geochemical data, a systematic study was conducted on the sedimentary characteristics and diagenetic processes of fine-grained rocks in the second member of the Lucaogou Formation.The results indicate that lithology has a minimal control over the petrophysical properties, pore structure, and fluid mobility of the finegrained rocks. Regardless of lithology, high-quality reservoirs can form during diagenesis. Except for dolomite, other fine-grained lithologies are generally rich in organic matter. Cyanobacteria predominantly develop in tuff and dolomitic tuff, while green algae are observed in tuff, dolomitic tuff, and tuffaceous dolomite. The widespread organic matter underwent significant hydrocarbon generation during the Middle Diagenetic Stage A, which not only altered the diagenetic environment but also effectively and extensively dissolved soluble minerals within the fine-grained rock reservoirs. Compaction is identified as the primary factor leading to the densification of fine-grained rocks in the second member of the Lucaogou Formation, whereas cementation has a relatively minor impact on reservoir quality. Dissolution is the key mechanism for forming high-quality tuff reservoirs, while dolomitization and its multiple phases have significantly enhanced the storage capacity of dolomite reservoirs. Based on the intensity of dissolution and dolomitization, the diagenetic phases of fine-grained rocks in the second member of the Lucaogou Formation were classified into five types. Among them, the strongly dissolved-weakly dolomitized phase and the moderately dissolved-moderately dolomitized phase are the most favorable. Using the random forest method in matlab, single-well predictions of diagenetic phases were conducted to determine their distribution. The findings not only provide valuable insights into identifying favorable facies zones for shale oil exploration in the second member of the Lucaogou Formation but also contribute to understanding the formation mechanisms of high-quality fine-grained rock reservoirs under this unique sedimentary background.

Key words: diagenetic phases, fine-grained rocks, salinized lacustrine, organic-rich, Luocao Formation, Santanghu Basin

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