Research on Micro-Pore Structure and 3D Visual Characterization of Inter-Salt Shale Based on X-CT Imaging Digital Core Technology
Abstract
:1. Introduction
2. Samples and Methods
2.1. Sample Collection
2.2. Methods
2.2.1. QEMSCAN
2.2.2. Micro-CT Scans
2.2.3. MAPS
2.2.4. Fractal Dimension
3. Results and Discussion
3.1. Mineral Composition and Pore Structure Type
3.1.1. Mineral Composition
3.1.2. Pore Structure Type
3.2. Microscopic Pore Structure from CT Scans
3.2.1. Pore Structure Type Image of Core Based on CT Scans
3.2.2. Three-Dimensional Coal Structure Reconstruction
3.3. Three-Dimensional Pore Structure and Visualization
3.3.1. 3D Visualization of Pore Space
3.3.2. Pore Network Model
3.3.3. Fractal Dimension Analysis of Pore Structure
- The acquired two-dimensional images of the three cores are processed by grayscale adjustment, feature detection, boundary recognition;
- Image binarization: strengthen the target information in the image, and convert the image into a two-dimensional matrix represented by numbers “0” and “1”;
- Divide the binarized image with boxes of size a × a (a > 0), and count the number of boxes to be covered N;
- Count the dimension of pores under different box sizes and fit the data of points drawn in double logarithmic coordinates with the data composed of grid size and number of covered grids.
4. Conclusions
Author Contributions
Funding
Data Availability Statement
Conflicts of Interest
References
- Tong, X.G.; Zhang, G.Y.; Wang, Z.J.; Wen, Z.X.; Tian, Z.J.; Wang, H.J.; Ma, F.; Wu, Y.P. Distribution and potential of global oil and gas resources. Pet. Explor. Dev. 2018, 45, 779–789. [Google Scholar] [CrossRef]
- Sorrell, S.; Speirs, J.; Bentley, R.; Brandt, A.; Miller, R. Global oil depletion: A review of the evidence. Energy Policy 2010, 38, 5290–5295. [Google Scholar] [CrossRef]
- Zou, C.N.; Yang, Z.; He, D.B.; Wei, Y.S.; Li, J.; Jia, A.L.; Chen, J.J.; Zhao, Q.; Li, Y.L.; Li, J.; et al. Theory, technology and prospects of conventional and unconventional natural gas. Pet. Explor. Dev. 2018, 45, 575–587. [Google Scholar] [CrossRef]
- Zhou, Q.F. Discussion on key issues of shale oil/gas resource assessment. Oil Gas Geol. 2022, 43, 26–33. [Google Scholar]
- Tong, X.G.; Li, D.H.; Wang, H.J.; Wang, B.; Liu, Z.D.; Xie, Y.F.; Zhang, X.S.; Yang, L.Y.; Ma, F.; Wu, Z.Z. Assessment of global unconventional oil and gas resources. Pet. Explor. Dev. 2016, 43, 925–940. [Google Scholar]
- Feng, Q.H.; Xu, S.Q.; Xing, X.D.; Zhang, W.; Wang, S. Advances and challenges in shale oil development: A critical review. Adv. Geo-Energy Res. 2020, 4, 406–418. [Google Scholar] [CrossRef]
- Yan, L.; Chen, F.L.; Wang, Z.P.; Yan, Y.Q.; Cao, J.J.; Wang, K.Q. Challenges and Technical Countermeasures for Effective Development of Shale Oil in China. Pet. Drill. Technol. 2020, 48, 63–69. [Google Scholar]
- Lai, J.; Wang, G.W.; Wang, Z.Y.; Chen, J.; Pang, X.J.; Wang, S.C.; Zhou, Z.L.; He, Z.B.; Qin, Z.Q.; Fan, X.Q. A review on pore structure characterization in tight sandstones. Earth-Sci. Rev. 2018, 177, 436–457. [Google Scholar] [CrossRef]
- Song, W.H.; Wang, D.Y.; Yao, Y.; Li, Y.; Sun, H.; Yang, Y.F.; Zhang, L. Multiscale image-based fractal characteristic of shale pore structure with implication to accurate prediction of gas permeability. Fuel 2019, 241, 522–532. [Google Scholar] [CrossRef]
- Li, Z.Q.; Wang, W.; Wang, X.M.; Bai, Y.W.; Qin, D.T.; Zhao, Y. Study on fractal characteristics of micro-nano pore structure of shale. Pet. Geol. Exp. 2018, 26, 494–503. [Google Scholar]
- Dou, J.A.; Lin, L.Q.; Shao, F.; Dong, H.M. Advances in characterization techniques and experimental methods of shale gas reservoir pore structure. J. Xi’an Univ. Sci. Technol. 2020, 40, 1019–1030. [Google Scholar]
- Gong, X.P.; Tang, H.M.; Zhao, F.; Wang, J.J.; Xiong, H. Quantitative characterization of pore structure of shale reservoir of Longmaxi Formation in Sichuan Basin. Lithol. Reserv. 2016, 28, 48–57. [Google Scholar]
- Wu, Y.Q.; Tahmasebi, P.; Lin, C.Y.; Zahid, M.A.; Dong, C.M.; Golab, A.; Ren, L.H. A comprehensive study on geometric, topological and fractal characterizations of pore systems in low-permeability reservoirs based on SEM, MICP, NMR, and X-ray CT experiments. Mar. Pet. Geol. 2019, 103, 12–28. [Google Scholar] [CrossRef]
- Feng, D.J.; Xiao, K.H. Constant velocity mercury injection and nuclear magnetic resonance in evaluation of tight sandstone reservoirs in western Sichuan Basin. Pet. Geol. Exp. 2021, 43, 368–376. [Google Scholar]
- Wang, J.K.; Zhang, J.L.; Shen, W.L.; Liu, H.Y. Comparison of the Pore Structure of Ultralow-Permeability Reservoirs Between the East and West Subsags of the Lishui Sag Using Constant-Rate Mercury Injection. J. Ocean Univ. China 2021, 20, 315–328. [Google Scholar] [CrossRef]
- Wang, Y.M.; Huang, J.L.; Li, X.J.; Dong, D.Z.; Wang, S.F.; Guan, Q.Z. Quantitative characterization of fractures and pores in shale beds of the Lower Silurian, Longmaxi Formation, Sichuan Basin. Nat. Gas Ind. B 2015, 2, 481–488. [Google Scholar] [CrossRef] [Green Version]
- Sun, M.D.; Yu, B.S.; Hu, Q.H.; Yang, R.; Zhang, Y.F.; Li, B.; Yuri, M.; Gang, G. Pore structure characterization of organic-rich Niutitang shale from China: Small angle neutron scattering (SANS) study. Int. J. Coal Geol. 2018, 186, 115–125. [Google Scholar] [CrossRef]
- Wu, J.G.; Yuan, Y.; Niu, S.Y.; Wei, X.F.; Yang, J.J. Multiscale characterization of pore structure and connectivity of Wufeng-Longmaxi shale in Sichuan Basin, China. Mar. Pet. Geol. 2020, 120, 104514. [Google Scholar] [CrossRef]
- Ni, H.Y.; Liu, J.F.; Huang, B.X.; Pu, H.; Meng, Q.B.; Wang, Y.G.; Sha, Z.H. Quantitative analysis of pore structure and permeability characteristics of sandstone using SEM and CT images. J. Nat. Gas Sci. Eng. 2021, 88, 103861. [Google Scholar] [CrossRef]
- Bai, B.; Zhu, R.K.; Wu, S.T.; Yang, W.J.; Gelb, J.; Gu, A.; Zhang, X.X.; Su, L. Multi-scale method of Nano (Micro)-CT study on microscopic pore structure of tight sandstone of Yanchang Formation, Ordos Basin. Pet. Explor. Dev. 2013, 40, 354–358. [Google Scholar] [CrossRef]
- Deng, H.C.; Hu, X.F.; Li, H.A.; Luo, B.; Wang, W. Improved pore-structure characterization in shale formations with FESEM technique. J. Nat. Gas Sci. Eng. 2016, 35, 309–319. [Google Scholar] [CrossRef]
- Gao, H.; Li, H.A. Pore structure characterization, permeability evaluation and enhanced gas recovery techniques of tight gas sandstones. J. Nat. Gas Sci. Eng. 2016, 28, 536–547. [Google Scholar] [CrossRef]
- Li, J.L.; Cheng, B.Y.; Liu, R.J.; Meng, F.L.; Liu, Y.; Gao, Y.; Ma, K.; Jiang, H.Q. Micro mechanism of water sensitivity of pore scale glutenite based on digital core. Acta Pet. Sin. 2019, 40, 594–603. [Google Scholar]
- Bai, Y.; Berezovsky, V.; Popov, V. Digital Core 3D Reconstruction Based on Micro-CT images via a Deep Learning Method. In Proceedings of the 2020 International Conference on High Performance Big Data and Intelligent Systems (HPBD&IS), IEEE, Shenzhen, China, 23 May 2020; pp. 1–6. [Google Scholar]
- Sakhaee, P.A.; Li, W.F. Fractal dimensions of shale. J. Nat. Gas Sci. Eng. 2016, 30, 578–582. [Google Scholar] [CrossRef]
- Xia, Y.X.; Cai, J.C.; Perfect, E.; Wei, W.; Zhang, Q.; Meng, Q.B. Fractal dimension, lacunarity and succolarity analyses on CT images of reservoir rocks for permeability prediction. J. Hydrol. 2019, 579, 124198. [Google Scholar] [CrossRef]
- Wang, L.C. Research on Fractal Characteristic of Pore Structure and Permeability Model in Sandstone Reservoirs; China University of Petroleum: Beijing, China, 2018. [Google Scholar]
- Nayak, S.R.; Mishra, J.; Palai, G. Analysing roughness of surface through fractal dimension: A review. Image Vis. Comput. 2019, 89, 21–34. [Google Scholar] [CrossRef]
- Panigrahy, C.; Seal, A.; Mahato, N.K.; Bhattacharjee, D. Differential box counting methods for estimating fractal dimension of gray-scale images: A survey. Chaos Solitons Fractals 2019, 126, 178–202. [Google Scholar] [CrossRef]
- Li, W.H.; Lu, S.F.; Xue, H.T.; Zhang, P.F.; Hu, Y. Microscopic pore structure in shale reservoir in the argillaceous dolomite from the Jianghan Basin. Fuel 2016, 181, 1041–1049. [Google Scholar] [CrossRef]
- Loucks, R.G.; Reed, R.M.; Ruppel, S.C.; Jarvie, D.M. Morphology, genesis, and distribution of nanometer-scale pores in siliceous mudstones of the Mississippian Barnett Shale. J. Sediment. Res. 2009, 79, 848–861. [Google Scholar] [CrossRef] [Green Version]
- Sui, W.J.; Tian, Y.Y.; Yao, C.H. Investigation of microscopic pore structure variations of shale due to hydration effects through SEM fixed-point observation experiments. Pet. Explor. Dev. 2018, 45, 955–962. [Google Scholar] [CrossRef]
- Tiwari, P.; Deo, M.; Lin, C.L.; Miller, J.D. Characterization of oil shale pore structure before and after pyrolysis by using X-ray micro CT. Fuel 2013, 107, 547–554. [Google Scholar] [CrossRef]
- Sun, D.L.; Zou, C.N.; Jia, A.L.; Wei, Y.S.; Zhu, R.K.; Wu, S.T.; Guo, Z. Development characteristics and orientation of tight oil and gas in China. Pet. Explor. Dev. 2019, 46, 1015–1026. [Google Scholar] [CrossRef]
- Jia, C.Z.; Zou, C.N.; Yang, Z.; Zhu, R.K.; Chen, Z.X.; Jiang, L. Significant progress of continental petroleum geology theory in basins of Central and Western. Pet. Explor. Dev. 2018, 45, 546–560. [Google Scholar] [CrossRef]
- Zhao, B.; Shang, Y.J. Characterizing connectivity of nano-sized pores of shale based on complex network theory. J. Eng. Geol. 2018, 26, 504–509. [Google Scholar]
Publisher’s Note: MDPI stays neutral with regard to jurisdictional claims in published maps and institutional affiliations. |
© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Zhao, J.; Zhang, Y.; Zhang, M.; Mao, Z.; Wang, C.; Hu, R.; Yang, L.; Liu, Y. Research on Micro-Pore Structure and 3D Visual Characterization of Inter-Salt Shale Based on X-CT Imaging Digital Core Technology. Processes 2022, 10, 1321. https://doi.org/10.3390/pr10071321
Zhao J, Zhang Y, Zhang M, Mao Z, Wang C, Hu R, Yang L, Liu Y. Research on Micro-Pore Structure and 3D Visual Characterization of Inter-Salt Shale Based on X-CT Imaging Digital Core Technology. Processes. 2022; 10(7):1321. https://doi.org/10.3390/pr10071321
Chicago/Turabian StyleZhao, Jie, Yizhong Zhang, Maolin Zhang, Zheng Mao, Chenchen Wang, Rongrong Hu, Long Yang, and Yong Liu. 2022. "Research on Micro-Pore Structure and 3D Visual Characterization of Inter-Salt Shale Based on X-CT Imaging Digital Core Technology" Processes 10, no. 7: 1321. https://doi.org/10.3390/pr10071321
APA StyleZhao, J., Zhang, Y., Zhang, M., Mao, Z., Wang, C., Hu, R., Yang, L., & Liu, Y. (2022). Research on Micro-Pore Structure and 3D Visual Characterization of Inter-Salt Shale Based on X-CT Imaging Digital Core Technology. Processes, 10(7), 1321. https://doi.org/10.3390/pr10071321