Micro-pore structure and fractal characteristics of deep shale from Wufeng Formation to Longmaxi Formation in Jingmen exploration area, Hubei Province, China

Journal of Natural Gas Geoscience - Tập 7 - Trang 121-132 - 2022
Xiaoming Li1, Yarong Wang1, Wen Lin2, Lihong Ma1, Dexun Liu2, Jirong Liu1, Yu Zhang1
1College of Safety Engineering, North China Institute of Science and Technology, Beijing, 101601, China
2Department of Shale Gas, Research Institute of Petroleum Exploration and Development, PetroChina, Beijing, 100083, China

Tài liệu tham khảo

Jia, 2016, Progress in key technologies for evaluating marine shale gas development in China, Petrol. Explor. Dev., 43, 1, 10.1016/S1876-3804(16)30120-3 Li, 2021, Characteristic of the shale gas reservoirs and evaluation of sweet spots in Wufeng Foramtion and Longmaxi Formation in Jingmen exploration area: a case from the X well, Coal Geol. Explor., 49, 1 Liu, 2020, Evolution and implications of shale pore structure characteristics under different preservation conditions, Reserv. Eval. Dev., 10, 1 Liu, 2020, Microstructure characteristics of Wufeng-Longmaxi shale gas reservoirs with different depth, southeastern Sichuan Basin, Petrol. Geol. Exp., 42, 379 Liu, 2016, Micro-pore structure of Longmaxi shale from southeast Sichuan Basin, Mar. Geol. Quat. Geol., 36, 127 Zou, 2011, First discovery of na-no-pore throat in oil and gas reservoir in China and its scientific value, Acta Petrol. Sin., 27, 1857 Wang, 2020, Progress and prospect of key experimental technologies for shale gas geological evaluation, Nat. Gas. Ind., 40, 1 Gao, 2020, Differential development characteristics of organic matter pores and their impact on reservoir space of Longmaxi Formation shale from the South Sichuan Basin, Petrol. Sci. Bull., 5, 1 Bai, 2018, Study on shale organic porosity in the Longmaxi Formation, Anye-1 Well using field emission-scanning electron microscopy and Per Geos system, Rock Miner. Anal., 37, 225 Pang, 2018, Differences of micropore structure between marine shale and continental shale: examples from Longmaxi formation in southern Sichuan Basin and Yanchang Formation in Ordos Basin, Nat. Gas Expl. Dev., 42, 29 Song, 2019, Research advances on characteristics of nanopore structure of organic-rich shales, Acta Sedimentol. Sin., 37, 1309 Dou, 2020, Advances in characterization techniques and experimental methods of shale gas reservoir pore structure, J. Xi'an Univ. Sci. Technol., 40, 1019 Li, 2020, Quantitative characterization and microscopic occurrence mechanism of pore water in shale matrix, Acta Pet. Sin., 41, 979 Zhao, 2020, 96 Zhang, 2020, Investigation of fractal characteristics and its main controlling factors of shale reservoir: a case study of the Longmaxi shale in Weiyuan shale gas field, J. China Inst. Min. Technol., 49, 110 Yang, 2014, Fractal characteristics of nanopore in shales, Nat. Gas Geosci., 25, 618 Mandelbrot, 1977, 1 Sun, 2017, Surface fractal characteristics and their influence on shale nanopores, J. Southwest Petrol. Univ. (Sci. Technol. Ed.), 39, 85 Xiao, 2021, Pore structure and fractal characteristics of different lithofacies shales of the Lower Silurian Longmaxi Formation in southeast Chongqing, Sci. Technol. Eng., 21, 512 Ma, 2015, 63 Deng, 2018, The geological structure in the Dangyang area and its significance to the shale gas exploration in Yichang area, China, J. Chengdu Univ. Technol. (Sci. Technol. Ed.), 45, 487 Zhao, 2014, Fractal characteristics of shale reservoir pore based on nitrogen adsorption, J. Northeast Petrol. Univ., 38, 100 Xiong, 2014, Fractal characteristics of pore structure of Lower Cambrian shale in southeast Chongqing using nitrogen adsorption data, Sci. Technol. Rev., 32, 53 Brunauer, 1938, Adsorption of gases in multimolecular layers, J. Am. Chem. Soc., 60, 309, 10.1021/ja01269a023 Thierfelder, 2011, Methane adsorption on graphene from first principles including dispersion interaction, Surf. Sci., 605, 746, 10.1016/j.susc.2011.01.012 Rouquerol, 1994, Recommendations for the characterization of porous solids(Technical Report), Pure Appl. Chem., 66, 1739, 10.1351/pac199466081739 Zhu, 2018, Microscopic pore structure and fractal characteristics of Wufeng-Longmaxi shale, south Sichuan, Sci. Technol. Eng., 18, 12 Xu, 2004, 51 Thommes, 2015, Physisorption of gases, with special reference to the evaluation of surface area and pore size distribution (IUPAC Technical Report), Pure Appl. Chem., 87, 1051, 10.1515/pac-2014-1117 Li, 2015, Study on pore structure of shale based on isothermal adsorption curve morphology, Sci. Technol. Inf., 13, 240 Sing, 1998, Adsorption methods for the characterization of porous materials, Adv. Colloid Interface Sci., 76, 3, 10.1016/S0001-8686(98)00038-4 Gregg, 1982, 1 Xie, 2006, Contrast of nitrogen adsorption and mercury porosimetry method in analysis of shale's pore size distribution, Nat. Gas. Ind., 26, 100, 10.1016/S1003-9953(06)60015-7 Fang, 2008, Mechanics characteristic analysis of pores on the surface of sand grain before pollution, Sci. China (Ser. G), 38, 714 Avnir, 1989, An isotherm equation for adsorption on fractal surfaces of heterogeneous porous materials, Langmuir, 5, 1431, 10.1021/la00090a032 Jaroniec, 1995, Evaluation of the fractal dimension from a single adsorption isotherm, Langmuir, 11, 2316, 10.1021/la00006a076 Wang, 2014, Biogenic silica of organic-rich shale in Sichuan Basin and its significance for shale gas, Acta Sci. Nauralium Univ. Pekin., 50, 476 Wang, 2018, Pore structure and fractal characteristics of Lower Cambrian shales, Fault-Block Oil Gas Field, 25, 589 Cao, 2016, Characteristics of shale pores, fractal dimension and their controlling factors determined by nitrogen adsorption and mercury injection methods, Petrol. Geol. Recov. Eff., 23, 1