Based on micro-scale casting thin sections, nano-scale SEM images, and the pore distribution map identified through a binary image in Matlab, the pore size distribution and pore throat coordination number of the strata of Upper Paleozoic He8 section tight sandstone in the southeastern Ordos Basin were quantitatively analyzed with the above experimental data. In combination with a high-pressure mercury injection experiment, the pore throat distribution, the pore throat ratio, and the relationships between the characteristics, parameters, and pore permeability were investigated clearly. The results show that the tight sandstone pore space in the study area is dominated by micron-sized intergranular pores, dissolved pores, and intragranular po...
The pore-throat structures play a dominant role in the evaluation of properties of tight sandstone, ...
Accurate characterization of the micro- and nano-pore radius values in a tight sandstone reservoir i...
Understanding the microheterogeneity of tight sandstone is the basis of reservoir science, and quant...
Based on micro-scale casting thin sections, nano-scale SEM images, and the pore distribution map ide...
The characterization of pore throat structure in tight reservoirs is the basis for the effective dev...
Tight sandstone reservoirs typically show a wide pore size distribution, which ranges from several n...
This study aimed to investigate the complete distribution of reservoir space in tight oil sandstone ...
This study aimed to investigate the complete distribution of reservoir space in tight oil sandstone ...
The pore connectivity and distribution of moveable fluids, which determines fluid movability and rec...
Rate-controlled porosimetry (RCP), nuclear magnetic resonance (NMR) and micro CT tests were conducte...
Multi-scale (nano-to-micro) three-dimensional CT imaging was used to characterize the distribution a...
Tight sandstone reservoirs have small pore throat sizes and complex pore structures. Taking the Chan...
The microstructure differences of the Triassic Chang 6 and Chang 8 members tight reservoirs in the L...
Understanding oil and gas production from low-permeability sandstones requires an understanding of t...
Based on the results of rate-controlled mercury-injection experiments, the microscopic pore-throat s...
The pore-throat structures play a dominant role in the evaluation of properties of tight sandstone, ...
Accurate characterization of the micro- and nano-pore radius values in a tight sandstone reservoir i...
Understanding the microheterogeneity of tight sandstone is the basis of reservoir science, and quant...
Based on micro-scale casting thin sections, nano-scale SEM images, and the pore distribution map ide...
The characterization of pore throat structure in tight reservoirs is the basis for the effective dev...
Tight sandstone reservoirs typically show a wide pore size distribution, which ranges from several n...
This study aimed to investigate the complete distribution of reservoir space in tight oil sandstone ...
This study aimed to investigate the complete distribution of reservoir space in tight oil sandstone ...
The pore connectivity and distribution of moveable fluids, which determines fluid movability and rec...
Rate-controlled porosimetry (RCP), nuclear magnetic resonance (NMR) and micro CT tests were conducte...
Multi-scale (nano-to-micro) three-dimensional CT imaging was used to characterize the distribution a...
Tight sandstone reservoirs have small pore throat sizes and complex pore structures. Taking the Chan...
The microstructure differences of the Triassic Chang 6 and Chang 8 members tight reservoirs in the L...
Understanding oil and gas production from low-permeability sandstones requires an understanding of t...
Based on the results of rate-controlled mercury-injection experiments, the microscopic pore-throat s...
The pore-throat structures play a dominant role in the evaluation of properties of tight sandstone, ...
Accurate characterization of the micro- and nano-pore radius values in a tight sandstone reservoir i...
Understanding the microheterogeneity of tight sandstone is the basis of reservoir science, and quant...