A method to judge shale gas flow regimes based on digital core analysis is proposed in this work. Firstly, three-dimensional shale digital cores in an anonymous shale formation in the Sichuan Basin are reconstructed by a Markov Chain Monte Carlo (MCMC) algorithm based on two-dimensional Scanning Electron Microscope (SEM) images. Then a voxel-based method is proposed to calculate the characteristic length of the three-dimensional shale digital core. The Knudsen number for three-dimensional shale digital cores is calculated by the ratio of the molecular mean free path to the characteristic length and is used to judge the flow regimes under different reservoir conditions. The results indicate that shale gas flow regimes are mainly located at t...
Imaging and image analysis of shale provides insights into the pore and fracture networks, dispositi...
Shale gas seepage theory provides a scientific basis for dynamically analyzing the physical gas flow...
Shale gas is a kind of unconventional oil-gas resource with tremendous potential. For thorough under...
Characterization of shale cores with low and anisotropic permeability is complicated, due to the pre...
Shale reservoir contains different rock components that exhibit multi-scale hierarchical pore struct...
The gas flow in shale nanopores undergoes a transition from continuum-transition flow regimes to Knu...
Owing to the presence of multiscale pore structures, characterization of laminated shales is both ex...
The gas transport in shale nanopores is always one of the major concerns in terms of the developme...
Extremely low permeability due to nano-scale pores is a distinctive feature of gas transport in a sh...
Shale reservoirs are rich in nanoscale pore-microfractures, and generally contain water (especially ...
Several techniques (such as scanning electron microscopy (SEM) and gas adsorption systems) have been...
Shale has been considered as good gas reservoir due to its abundant interior nanoscale pores. Thus, ...
Computation of shale permeability is challenging owing to the complicated physics of gas flow and th...
The storage space of shale reservoir is mainly composed of complicated nanoscale pore, in which the ...
Hydrocarbons in subsurface nanoporous media, such as shale, are promising energy resources to compen...
Imaging and image analysis of shale provides insights into the pore and fracture networks, dispositi...
Shale gas seepage theory provides a scientific basis for dynamically analyzing the physical gas flow...
Shale gas is a kind of unconventional oil-gas resource with tremendous potential. For thorough under...
Characterization of shale cores with low and anisotropic permeability is complicated, due to the pre...
Shale reservoir contains different rock components that exhibit multi-scale hierarchical pore struct...
The gas flow in shale nanopores undergoes a transition from continuum-transition flow regimes to Knu...
Owing to the presence of multiscale pore structures, characterization of laminated shales is both ex...
The gas transport in shale nanopores is always one of the major concerns in terms of the developme...
Extremely low permeability due to nano-scale pores is a distinctive feature of gas transport in a sh...
Shale reservoirs are rich in nanoscale pore-microfractures, and generally contain water (especially ...
Several techniques (such as scanning electron microscopy (SEM) and gas adsorption systems) have been...
Shale has been considered as good gas reservoir due to its abundant interior nanoscale pores. Thus, ...
Computation of shale permeability is challenging owing to the complicated physics of gas flow and th...
The storage space of shale reservoir is mainly composed of complicated nanoscale pore, in which the ...
Hydrocarbons in subsurface nanoporous media, such as shale, are promising energy resources to compen...
Imaging and image analysis of shale provides insights into the pore and fracture networks, dispositi...
Shale gas seepage theory provides a scientific basis for dynamically analyzing the physical gas flow...
Shale gas is a kind of unconventional oil-gas resource with tremendous potential. For thorough under...