International audienceThe macroscopic permeability of a natural shale is determined by using structural measurements on three different scales. Transmission electron microscopy yields two-dimensional (2D) images with pixels smaller than 1 nm; these images are used to reconstruct 3D nanostructures. Three-dimensional focused ion beam-scanning electron microscopy (5.95- to 8.48-nm voxel size) provides 3D mesoscale pores of limited relative volume (1.71-5.9%). Micro-computed tomography (700-nm voxel size) provides information on the mineralogy of the shale, including the pores on this scale which do not percolate; synthetic 3D media are derived on the macroscopic scale by a training image technique. Permeability of the nanoscale, of the mesosca...
In this paper, we conducted image processing on FE-SEM images of representative shale samples from W...
Local porosity theory in combination with percolation theory was applied to shale microstructures th...
Computer X-ray microtomography (µXCT) represents a powerful tool for investigating the physical prop...
International audienceThe macroscopic permeability of a natural shale is determined by using structu...
International audienceThe multiscale pore structure of a natural shale is obtained by three distinct...
The pore structure of a natural shale is obtained by three imaging means. Micro-tomography results a...
The pore and fracture microstructures are key to understanding gas flow in shales. The experimental ...
Shale possesses abundant micro/nanopores. Most micro/nanopores that exist in organic-rich shale are ...
Characterization of shale cores with low and anisotropic permeability is complicated, due to the pre...
Pore characterization in shales is challenging owing to the wide range of pore sizes and types prese...
Owing to the presence of multiscale pore structures, characterization of laminated shales is both ex...
X-ray computed tomography and serial block face scanning electron microscopy imaging techniques were...
Shale has proven to be a major unconventional natural gas play. However, due to its complex bedding ...
dissertationShale oil and gas has revolutionized the energy sector in the United States. Although mo...
In this paper, we conducted image processing on FE-SEM images of representative shale samples from W...
Local porosity theory in combination with percolation theory was applied to shale microstructures th...
Computer X-ray microtomography (µXCT) represents a powerful tool for investigating the physical prop...
International audienceThe macroscopic permeability of a natural shale is determined by using structu...
International audienceThe multiscale pore structure of a natural shale is obtained by three distinct...
The pore structure of a natural shale is obtained by three imaging means. Micro-tomography results a...
The pore and fracture microstructures are key to understanding gas flow in shales. The experimental ...
Shale possesses abundant micro/nanopores. Most micro/nanopores that exist in organic-rich shale are ...
Characterization of shale cores with low and anisotropic permeability is complicated, due to the pre...
Pore characterization in shales is challenging owing to the wide range of pore sizes and types prese...
Owing to the presence of multiscale pore structures, characterization of laminated shales is both ex...
X-ray computed tomography and serial block face scanning electron microscopy imaging techniques were...
Shale has proven to be a major unconventional natural gas play. However, due to its complex bedding ...
dissertationShale oil and gas has revolutionized the energy sector in the United States. Although mo...
In this paper, we conducted image processing on FE-SEM images of representative shale samples from W...
Local porosity theory in combination with percolation theory was applied to shale microstructures th...
Computer X-ray microtomography (µXCT) represents a powerful tool for investigating the physical prop...