Fabric characteristics and oil accumulation laws of shales in fine-grained areas of faulted lacustrine basin: a case of Paleogene in Huanghua Depression

被引:0
|
作者
Pu X. [1 ]
Fu Y. [1 ]
Shi Z. [1 ]
Chai G. [1 ]
Chen C. [1 ]
Jiang W. [1 ]
Han W. [1 ]
Yan J. [2 ]
Guan Q. [1 ]
Xu J. [1 ]
Dong J. [1 ]
机构
[1] PetroChina Dagang Oilfield Company, Tianjin
[2] School of Geoscience, China University of Petroleum(East China), Qingdao
关键词
fabric characteristics; Huanghua Depression; oil accumulation laws; shale oil; the first member of Shahejie Formation; the second member of Kongdian Formation; the third member of Shahejie Formation;
D O I
10.11817/j.issn.1672-7207.2024.03.014
中图分类号
学科分类号
摘要
In order to clarify the microscopic fabric characteristics and oil accumulation laws of shales in fine-grained areas of faulted lacustrine basin, based on the core data, logging data and oil testing data of three sets of shale successions in the second member of Kongdian Formation (Kong 2 for short), the third member and the first member of Shahejie Formation (Sha 3 and Sha 1 for short) of the Paleogene in Huanghua Depression, mineral analysis-field emission scanning electron microscope, argon ion polishing-field emission scanning electron microscope, focused ion beam-field emission scanning electron microscope etc. were used to characterize shale samples at multiple scales and dimensions in detail. The characteristics of shale minerals, organic matter, pores and shale oil occurrence were systematically analyzed from the microscopic and quantitative points of view, to reveal the accumulation and enrichment laws, and enrichment model of shale oil. The results show that in the microscopic view, complex types of shales are composed by multiple types of minerals mix and stack in laminae. The reservoir space in shale can be divided into nine types in three categories, including inorganic pore, organic pore and microfracture. Inorganic pores account for more than 85% on average, and pores with diameters less than 50 nm take up the majority of the reservoir space. Microscopically, there are three types of organic matter, synsedimentary organic matter, intergrown and differentiated organic matter, and migration and filling organic matter. Based on the characteristics, distribution and spatial interrelationship of four elements, including minerals, organic matter, reservoir space and hydrocarbons in shale strata, a "four-element coupling" reservoir accumulation and enrichment law is proposed, and three types of shale oil accumulation and enrichment models are sorted out. Under the guidance of these models, several horizontal wells have tapped high oil production in the Kong 2 Member in Cangdong Sag, and high-quality shale oil blocks have realized economically viable development at the current oil prices. Meanwhile, shale oil exploration has made major breakthrough in Sha 3 Member and lower submember of Sha 1 Member in Qikou Sag. All these show broad exploration prospects of Paleogene shale oil in Huanghua Depression. © 2024 Central South University of Technology. All rights reserved.
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页码:994 / 1007
页数:13
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共 30 条
  • [21] YAN Jihua, PU Xiugang, ZHOU Lihong, Et al., Naming method of fine-grained sedimentary rocks on basis of X-ray diffraction data, China Petroleum Exploration, 20, 1, (2015)
  • [22] PU Xiugang, SHI Zhannan, HAN Wenzhong, Et al., Petroleum geological characteristics and hydrocarbon discovery of shale system in fine-grained sedimentary area of lacustrine basin: a case study of Kong2 Member in Cangdong Sag, Huanghua Depression, Petroleum Geology and Recovery Efficiency, 26, 1, (2019)
  • [23] ZHAO Xianzheng, ZHOU Lihong, PU Xiugang, Et al., Favorable formation conditions and enrichment characteristics of lacustrine facies shale oil in faulted lake basin: a case study of Member 2 of Kongdian Formation in Cangdong Sag, Bohai Bay Basin[J], Acta Petrolei Sinica, 40, 9, (2019)
  • [24] QIN Jianzhong, China source rock, (2005)
  • [25] ZHOU Lihong, CHEN Changwei, HAN Guomeng, Et al., Geological characteristics and shale oil exploration potential of lower first member of shahejie formation in Qikou sag, Bohai Bay basin, Earth Science, 44, 8, pp. 2736-2750, (2019)
  • [26] ZHAO Jianhua, JIN Zhijun, JIN Zhenkui, Et al., Petrographic methods to distinguish organic matter type in shale, Petroleum Geology & Experiment, 38, 4, (2016)
  • [27] ZHANG Hui, JIAO Shujing, LIN Bowei, Et al., Genetic relationship between organic matters and minerals in the Lower Cambrian shale in Yangze Plate, Natural Gas Exploration and Development, 40, 4, (2017)
  • [28] LIU Zhenzhuang, BAI Minggang, YANG Yuru, Et al., Discussion on the genesis and exploration potential of different microscopic forms of organic matters in the longmaxi formation shale[J], Rock and Mineral Analysis, 39, 2, (2020)
  • [29] JARVIE D M., Shale resource systems for oil and gas: part 2 Shale-oil resource systems, Century, (2012)
  • [30] XUE Haitao, TIAN Shansi, LU Shuangfang, Et al., Selection and verification of key parameters in the quantitative evaluation of shale oil: a case study at the qingshankou formation, northern Songliao Basin, Bulletin of Mineralogy, Petrology and Geochemistry, 34, 1, (2015)