Non-equilibrium molecular dynamics simulations are used to investigate water transport through (7,7) CNTs, examining how changing the CNT length affects the internal flow dynamics. Pressure-driven water flow through CNT lengths ranging from 2.5 to 50 nm is simulated. We show that under the same applied pressure difference an increase in CNT length has a negligible effect on the resulting mass flow rate and fluid flow velocity. Flow enhancements over hydrodynamic expectations are directly proportional to the CNT length. Axial profiles of fluid properties demonstrate that entrance and exit effects are significant in the transport of water along CNTs. Large viscous losses in these entrance/exit regions lead into central “developed” regions in ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
Carbon nanotubes have become meaningful researching target since around two decades due to their gre...
Carbon nanotubes have become meaningful researching target since around two decades due to their gre...
Non-equilibrium molecular dynamics simulations are used to investigate water transport through (7,7)...
Non-equilibrium molecular dynamics simulations are performed to investigate water transport through ...
Non-equilibrium molecular dynamics simulations are used to investigate water transport through (7,7)...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...
Pressure-driven water flow through carbon nanotubes (CNTs) with diameters ranging from 1.66 to 4.99 ...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water transport inside carbon nano-tubes (CNTs) has attracted considerable attention due to its nano...
Non-equilibrium molecular dynamics simulations are performed to investigate how changing the number ...
We compare both new and commonly-used boundary conditions for generating pressure-driven flows throu...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
Carbon nanotubes have become meaningful researching target since around two decades due to their gre...
Carbon nanotubes have become meaningful researching target since around two decades due to their gre...
Non-equilibrium molecular dynamics simulations are used to investigate water transport through (7,7)...
Non-equilibrium molecular dynamics simulations are performed to investigate water transport through ...
Non-equilibrium molecular dynamics simulations are used to investigate water transport through (7,7)...
The advent of carbon nanotube (CNT) synthesis has created exciting new oppor- tunities in fluid dyna...
Pressure-driven water flow through carbon nanotubes (CNTs) with diameters ranging from 1.66 to 4.99 ...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water continually generates vast research interest due to its many unusual properties, not least of ...
Water transport inside carbon nano-tubes (CNTs) has attracted considerable attention due to its nano...
Non-equilibrium molecular dynamics simulations are performed to investigate how changing the number ...
We compare both new and commonly-used boundary conditions for generating pressure-driven flows throu...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
This article compares both new and commonly used boundary conditions for generating pressure-driven ...
Carbon nanotubes have become meaningful researching target since around two decades due to their gre...
Carbon nanotubes have become meaningful researching target since around two decades due to their gre...