LAPSE:2023.24389
Published Article

LAPSE:2023.24389
Geometrical and Topological Analysis of Pore Space in Sandstones Based on X-ray Computed Tomography
March 28, 2023
Abstract
The pore geometry and topology properties of pore space in rocks are significant for a better understanding of the complex hydrologic and elastic properties. However, geometry and topology information about the sandstone pore structures is not fully available. In this study, we obtained the topological and geometrical pore parameters from a representative elementary volume (REV) for fluid flow in sandstone samples. For comparison, eight types of sandstones with various porosities were studied based on the X-ray micro-computed tomography technique. In this study, the REV size was selected based on the parameters from the respective pore network models (PNM), not just the porosity. Our analysis indicates that despite different porosity, all the sandstone samples have highly triangular-shaped pores and a high degree of pore structural isotropy. The high porosity group sandstones exhibit wider ranges of pore sizes than the low porosity group sandstones. Compared to the high porosity group sandstones, the low porosity group sandstones samples showing a higher global aspect ratio, indicating some pores exist in the form of bottlenecks. The pore topological properties of different sandstones show a high dependence of the porosity. The high porosity group sandstones obtain large coordination numbers, large connectivity densities and low tortuosities. The results from this study will help better understand the complex pore structure and the fluid flow in sandstone.
The pore geometry and topology properties of pore space in rocks are significant for a better understanding of the complex hydrologic and elastic properties. However, geometry and topology information about the sandstone pore structures is not fully available. In this study, we obtained the topological and geometrical pore parameters from a representative elementary volume (REV) for fluid flow in sandstone samples. For comparison, eight types of sandstones with various porosities were studied based on the X-ray micro-computed tomography technique. In this study, the REV size was selected based on the parameters from the respective pore network models (PNM), not just the porosity. Our analysis indicates that despite different porosity, all the sandstone samples have highly triangular-shaped pores and a high degree of pore structural isotropy. The high porosity group sandstones exhibit wider ranges of pore sizes than the low porosity group sandstones. Compared to the high porosity group sandstones, the low porosity group sandstones samples showing a higher global aspect ratio, indicating some pores exist in the form of bottlenecks. The pore topological properties of different sandstones show a high dependence of the porosity. The high porosity group sandstones obtain large coordination numbers, large connectivity densities and low tortuosities. The results from this study will help better understand the complex pore structure and the fluid flow in sandstone.
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Keywords
digital rock physics, geometrical analysis, porosity, sandstone, topological analysis
Subject
Suggested Citation
Gong L, Nie L, Xu Y. Geometrical and Topological Analysis of Pore Space in Sandstones Based on X-ray Computed Tomography. (2023). LAPSE:2023.24389
Author Affiliations
Gong L: Construction Engineering College, Jilin University, Xin Min Zhu Street, Changchun 130026, China
Nie L: Construction Engineering College, Jilin University, Xin Min Zhu Street, Changchun 130026, China
Xu Y: Construction Engineering College, Jilin University, Xin Min Zhu Street, Changchun 130026, China
Nie L: Construction Engineering College, Jilin University, Xin Min Zhu Street, Changchun 130026, China
Xu Y: Construction Engineering College, Jilin University, Xin Min Zhu Street, Changchun 130026, China
Journal Name
Energies
Volume
13
Issue
15
Article Number
E3774
Year
2020
Publication Date
2020-07-23
ISSN
1996-1073
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Original Submission
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PII: en13153774, Publication Type: Journal Article
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LAPSE:2023.24389
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https://doi.org/10.3390/en13153774
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Mar 28, 2023
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