Acknowledgement The authors would like to thank the University of Aberdeen HPC (High Performance Computing) service for providing computational resources. W. Yong gratefully acknowledge the financial support from China Scholarship Council for his Ph.D. study (No. 201708060349).Peer reviewedPublisher PD
Shale gas has attracted significant attention in the past decade. Pioneered by the USA since the 194...
In more conventional gas reservoirs, gas flow is simple, uncomplicated, and described by simple flux...
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Understanding and characterizing the transport of shale gas (methane) through the nanopores of kerog...
Shale reservoir contains different rock components that exhibit multi-scale hierarchical pore struct...
Shale is rich in organic nanopores where shale gas mainly resides. Shale gas development is often ac...
The storage space of shale reservoir is mainly composed of complicated nanoscale pore, in which the ...
The underlying mechanism of shale gas migration behavior is of great importance to understanding the...
This report summarises our recent findings on non-ideal gas flow characteristics in shale nanopores fa...
Using molecular dynamics simulations we study the two-phase flow of water and methane through slit-s...
Unlike conventional gas reservoirs, the shale gas resources are widely distributed in organic-rich s...
Hydraulic fracturing treatments and horizontal well technology are central to the success of unconve...
Nanopores are extremely developed and randomly distributed in shale gas reservoirs. Due to the raref...
In the past decades, exploration and production activities gradually shift to unconventional resourc...
We perform a detailed study of methane flow through nanoporous kerogen. Using molecular dynamics and...
Shale gas has attracted significant attention in the past decade. Pioneered by the USA since the 194...
In more conventional gas reservoirs, gas flow is simple, uncomplicated, and described by simple flux...
Due to abundant nanoscale pores developed in shale, gas flow in shale presents a complex dynamic proc...
Understanding and characterizing the transport of shale gas (methane) through the nanopores of kerog...
Shale reservoir contains different rock components that exhibit multi-scale hierarchical pore struct...
Shale is rich in organic nanopores where shale gas mainly resides. Shale gas development is often ac...
The storage space of shale reservoir is mainly composed of complicated nanoscale pore, in which the ...
The underlying mechanism of shale gas migration behavior is of great importance to understanding the...
This report summarises our recent findings on non-ideal gas flow characteristics in shale nanopores fa...
Using molecular dynamics simulations we study the two-phase flow of water and methane through slit-s...
Unlike conventional gas reservoirs, the shale gas resources are widely distributed in organic-rich s...
Hydraulic fracturing treatments and horizontal well technology are central to the success of unconve...
Nanopores are extremely developed and randomly distributed in shale gas reservoirs. Due to the raref...
In the past decades, exploration and production activities gradually shift to unconventional resourc...
We perform a detailed study of methane flow through nanoporous kerogen. Using molecular dynamics and...
Shale gas has attracted significant attention in the past decade. Pioneered by the USA since the 194...
In more conventional gas reservoirs, gas flow is simple, uncomplicated, and described by simple flux...
Due to abundant nanoscale pores developed in shale, gas flow in shale presents a complex dynamic proc...