An anisotropic pore-network model to estimate the shale gas permeability
Document Type
Article
Publication Date
12-1-2021
Abstract
The permeability of shale is a significant and important design parameter for shale gas extraction. The shale gas permeability is usually obtained based on Darcy flow using standard laboratory permeability tests done on core samples, that do not account for different transport mechanisms at high pressures and anisotropic effects in shales due to nano-scale pore structure. In this study, the permeability of shale is predicted using a pore network model. The characteristics of pore structure can be described by specific parameters, including porosity, pore body and pore throat sizes and distributions and coordination numbers. The anisotropy was incorporated into the model using a coordination number ratio, and an algorithm that was developed for connections of pores in the shale formation. By predicting hydraulic connectivity and comparing it with several high-pressure permeability tests, the proposed three-dimensional pore network model was verified. Results show that the prediction from the anisotropic pore network model is closer to the test results than that based on the isotropic pore network model. The predicted permeability values from numerical simulation using anisotropic pore network model for four shales from Qaidam Basin, China are quite similar to those measured from laboratory tests. This study confirmed that the developed anisotropic three-dimensional pore network model could reasonably represent the natural gas flow in the actual shale formation so that it can be used as a prediction tool.
Identifier
85104234632 (Scopus)
Publication Title
Scientific Reports
External Full Text Location
https://doi.org/10.1038/s41598-021-86829-4
e-ISSN
20452322
PubMed ID
33846392
Issue
1
Volume
11
Grant
2019-SKLHSE-D-03
Fund Ref
National Natural Science Foundation of China
Recommended Citation
Zhang, Di; Zhang, Xinghao; Guo, Haohao; Lin, Dantong; Meegoda, Jay N.; and Hu, Liming, "An anisotropic pore-network model to estimate the shale gas permeability" (2021). Faculty Publications. 3623.
https://digitalcommons.njit.edu/fac_pubs/3623