Three-dimensional modeling and porosity calculation of coal rock pore structure

被引:0
作者
Qiong Li
Zheng Chen
Lin Yue
Yu Zhang
Jian-Jun He
Yong Li
机构
[1] Chengdu University of Technology,College of Geophysics
[2] Chengdu University of Technology,Key Laboratory of Earth Exploration and Information Technology of Ministry of Education
[3] Chengdu University of Technology,College of computer Science & Cybersecurity Security Technology (OXFORD BROOKES University)
来源
Applied Geophysics | 2022年 / 19卷
关键词
Coal rock; 3D model of pore structures; random-packing method; porosity; pore aspect ratio; nonlinear-fitting relationship;
D O I
暂无
中图分类号
学科分类号
摘要
Coal rock is a type of dual-porosity medium, which is composed of matrix pores and fracture-cutting matrix. They play different roles in the seepage and storage capacity of coal rock. Therefore, constructing the micropore structure of coal rock is very important in the exploration and development of coalbed methane. In this study, we use a coal rock digital core and three-dimensional modeling to study the pore structure of coal rock. First, the micropore structure of coal rock is quantitatively analyzed using a two-dimensional thin-section image, and the quantitative information of the pore and fracture (cleat) structure in the coal rock is extracted. The mean value and standard deviation of the face porosity and pore radius are obtained using statistical analysis. The number of pores is determined using dichotomy and spherical random-packing methods based on compression. By combining with the results of the petrophysical analysis, the single-porosity structure model of the coal rock is obtained using a nonequal-diameter sphere to represent the pores of the coal rock. Then, an ellipsoid with an aspect ratio that is very much lesser than one is used to represent the fracture (cleat) in the coal rock, and a dual-pore structure model of the coal rock is obtained. On this basis, the relationship between the different pore aspect ratios and porosity is explored, and a fitting relationship is obtained. The results show that a nonlinear relationship exists between them. The relationship model can provide a basis for the prediction of coal rock pore structure and the pore structure parameters and provide a reference for understanding the internal structure of coalbed methane reservoirs.
引用
收藏
页码:161 / 172
页数:11
相关论文
共 63 条
[11]  
He J J(1992)Application of matchstick geometry to stress dependent permeability in coals Proceedings of the Rocky Mountain Regional Meeting, SPE 24361 433-undefined
[12]  
Liu P C(1993)Study on the characteristics of coal micropores and their relationship with hydrocarbon migration and accumulation Science in China (Series B) 23 7-undefined
[13]  
Yuan Z(2018)Digital core modeling based on multiple-point statistics Journal of China University of Petroleum (Edition of Natural Science) 42 7-undefined
[14]  
Li K W(2020)Identifying the comprehensive pore structure characteristics of a rock from 3D images Journal of Petroleum Science and Engineering 187 7-undefined
[15]  
Liu W F(2001)Genetical type of proes in coal reservoir and its research significance Journal of China Coal Society 26 7-undefined
[16]  
Ding X H(2004)Using of scanning electron microscope on coal petrogy Journal of Chinese Electron Microscopy Society 23 7-undefined
[17]  
Zhou G(1996)Study on pore structure of gas outburst coal seam Coal Geology of China 8 7-undefined
[18]  
Okabe H(2012)Application of multiple-point geostatistics in 3D pore structure model reconstruction Journal of China University of Petroleum (Edition of Natural Science) 36 7-undefined
[19]  
Blunt M J(2000)Study of the pore and microfracture of the coal reservoirs in the SEM Journal of Chinese Electron Microscopy Society 19 7-undefined
[20]  
Oren P E(2015)Numerical simulation of fracture extending in coal seam under hydraulic fracturing engineering based on fractal theory Natural Gas Geoscience 26 7-undefined