We perform a detailed study of methane flow through nanoporous kerogen. Using molecular dynamics and modeling the kerogen pore with an amorphous carbon nanotube (a-CNT), we show that the reported flow enhancement over Hagen−Poisseuile flow is mainly due to the smoothness, on an atomic scale, of the CNTs. It acts in two ways: first, it helps the mobility of the adsorbed layer; second, and even more important for the flow enhancement, it prevents the dependency on the inverse of the channel length (L) from developing. While the former can incrementally contribute to the flow, the latter effect can explain the orders of magnitude found in comparison to macroscopic results.Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicada
AbstractTo understand the occurrence regularity of methane gas molecules in composite nanopores, the...
Recent advances in drilling and well stimulation technologies have led to rapid development of shale...
In a context of growing attention for shale gas, the precise impact of organic matter (kerogen) on h...
Fluid transport through carbon nanotubes have shown remarkable flow properties, with measured flow r...
Understanding and characterizing the transport of shale gas (methane) through the nanopores of kerog...
Transport of small hydrocarbon molecules inside organic nanopores is important to our understanding ...
Although hydrocarbon production from unconventional reservoirs, the so-called shale gas, has explode...
Fluid transport through carbon nanotubes have shown remarkable flow properties, with measured flow r...
Fast mass transport was identified for gas through nanoscale pores, especially those fabricated from...
Although hydrocarbon production from unconventional reservoirs, the so-called shale gas, has explode...
Acknowledgement The authors would like to thank the University of Aberdeen HPC (High Performance Com...
Most of the worlds currently accessible hydrocarbon resources are found in tight rocks - rocks with ...
Fluid transport on confined systems is a subject of theoretical and technological interest. For inst...
Adsorbed hydrocarbons, stored along the walls of kerogen pores and capillaries of organic-rich shale...
The underlying mechanism of shale gas migration behavior is of great importance to understanding the...
AbstractTo understand the occurrence regularity of methane gas molecules in composite nanopores, the...
Recent advances in drilling and well stimulation technologies have led to rapid development of shale...
In a context of growing attention for shale gas, the precise impact of organic matter (kerogen) on h...
Fluid transport through carbon nanotubes have shown remarkable flow properties, with measured flow r...
Understanding and characterizing the transport of shale gas (methane) through the nanopores of kerog...
Transport of small hydrocarbon molecules inside organic nanopores is important to our understanding ...
Although hydrocarbon production from unconventional reservoirs, the so-called shale gas, has explode...
Fluid transport through carbon nanotubes have shown remarkable flow properties, with measured flow r...
Fast mass transport was identified for gas through nanoscale pores, especially those fabricated from...
Although hydrocarbon production from unconventional reservoirs, the so-called shale gas, has explode...
Acknowledgement The authors would like to thank the University of Aberdeen HPC (High Performance Com...
Most of the worlds currently accessible hydrocarbon resources are found in tight rocks - rocks with ...
Fluid transport on confined systems is a subject of theoretical and technological interest. For inst...
Adsorbed hydrocarbons, stored along the walls of kerogen pores and capillaries of organic-rich shale...
The underlying mechanism of shale gas migration behavior is of great importance to understanding the...
AbstractTo understand the occurrence regularity of methane gas molecules in composite nanopores, the...
Recent advances in drilling and well stimulation technologies have led to rapid development of shale...
In a context of growing attention for shale gas, the precise impact of organic matter (kerogen) on h...