Laminar characteristics of lacustrine organic-rich shales and their significance for shale reservoir formation: A case study of the Paleogene shales in the Dongying Sag, Bohai Bay Basin, China

被引:36
作者
Shi, Juye [2 ]
Jin, Zhijun [1 ,3 ]
Liu, Quanyou [1 ,4 ]
Zhang, Tan [2 ]
Fan, Tailiang [2 ]
Gao, Zhiqian [2 ]
机构
[1] State Key Lab Shale Oil & Gas Enrichment Mech & E, Beijing 100083, Peoples R China
[2] China Univ Geosci Beijing, Sch Energy Resources, Beijing 100083, Peoples R China
[3] Peking Univ, Inst Energy, Beijing 100871, Peoples R China
[4] Sinopec, Petr Explorat & Prod Res Inst, Beijing 100083, Peoples R China
基金
中国国家自然科学基金;
关键词
Shale oil reservoir; Lamina; Pore types; Shahejie Formation; Bohai Bay Basin; JIYANG DEPRESSION; SHAHEJIE FORMATION; PORE STRUCTURE; ACCUMULATION; HYDROCARBON; PRESERVATION; LITHOFACIES; EXPLORATION; MECHANISMS; ORIGIN;
D O I
10.1016/j.jseaes.2021.104976
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Shale oil exploration in China has demonstrated that laminated shales are favorable lithofacies for producing shale oil effectively. It is of great significance to study the type and reservoir properties of shales with different laminar structures. In this study, the laminae of Paleogene organic-rich shales in the Dongying Sag, Bohai Bay Basin were divided into two categories and six types based on thin section petrography, scanning electron microscopy (SEM), and geochemical characterization. The laminar types include thin parallel laminae, thick parallel laminae, wavy laminae, lenticular laminae, weak laminae, and sandy laminae. The first three types of laminae have good continuity and were formed under low-energy hydrodynamic conditions. In comparison, the latter three types are discontinuous and were formed under relatively high-energy hydrodynamic conditions with a strong terrigenous input. Significant differences were observed in the reservoir space types, microcracks, and oil-bearing properties among the different laminae. Analyses of porosity and oil saturation further revealed that laminated shales with high laminar continuity exhibit higher porosity, permeability, and oil saturation values than shales with poor laminar continuity. Shales with thick parallel laminar shale and wavy laminar shale possess favorable petrophysical parameters. Thus, from the perspectives of reservoir and oil-bearing properties, laminated shales with high laminar continuity are better than shales with poor laminar continuity for shale oil exploration in the Dongying Sag. The new findings provide a reference for the optimization and evaluation of favorable continental shale oil reservoirs in eastern China.
引用
收藏
页数:9
相关论文
共 38 条
[1]  
Breyer J.A., 2016, UNC RES TECHN C
[2]   Characteristics and origin of abnormally high porosity zones in buried Paleogene clastic reservoirs in the Shengtuo area, Dongying Sag, East China [J].
Cao Yingchang ;
Yuan Guanghui ;
Li Xiaoyan ;
Wang Yanzhong ;
Xi Kelai ;
Wang Xiaoming ;
Jia Zhenzhen ;
Yang Tian .
PETROLEUM SCIENCE, 2014, 11 (03) :346-362
[3]   Characterization, controlling factors and evolution of fracture effectiveness in shale oil reservoirs [J].
Gong, Lei ;
Wang, Jie ;
Gao, Shuai ;
Fu, Xiaofei ;
Liu, Bo ;
Miao, Fengbin ;
Zhou, Xinping ;
Meng, Qingkuan .
JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2021, 203
[4]   Logging identification and characteristic analysis of the lacustrine organic-rich shale lithofacies: A case study from the Es3L shale in the Jiyang Depression, Bohai Bay Basin, Eastern China [J].
He, Jianhua ;
Ding, Wenlong ;
Jiang, Zaixing ;
Li, Ang ;
Wang, Ruyue ;
Sun, Yaxiong .
JOURNAL OF PETROLEUM SCIENCE AND ENGINEERING, 2016, 145 :238-255
[5]   Coupled nano-petrophysical and organic-geochemical study of the Wolfberry Play in Howard County, Texas USA [J].
Hu, Qinhong ;
Quintero, Ryan P. ;
El-Sobky, Hesham F. ;
Kang, Jianhong ;
Zhang, Tao .
MARINE AND PETROLEUM GEOLOGY, 2020, 122
[6]  
Hua G.L., 2020, ACTA SEDIMENTOL SIN, V110, P1
[7]   Characterization and Control of Mesopore Structural Heterogeneity for Low Thermal Maturity Shale: A Case Study of Yanchang Formation Shale, Ordos Basin [J].
Huang, Zhilong ;
Liu, Guoheng ;
Li, Tianjun ;
Li, Yuting ;
Yin, Yue ;
Wang, Lu .
ENERGY & FUELS, 2017, 31 (11) :11569-11586
[8]  
Jarvie D.M., 2012, SHALE RESERVOIRS GIA, P89, DOI DOI 10.1306/13321446M973489
[9]  
Katz BJ, 2005, SOC SEDIMENT GEOL SP, V82, P7
[10]  
Li B.L., 2007, J STRATIGR, V31, P449