We present Molecular Dynamics (MD) simulations of the imbibition process in nanopores in case of two different mechanisms of the wettability modification. We compare the imbibition of an aqueous surfactant solution into an oil-wet pore driven by surfactant adsorption onto the oil-wet rock surface (coating mechanism) and the imbibition of an aqueous surfactants solution driven by surfactants removing the contaminant molecules from the originally water-wet surface (cleaning mechanism). Our results show qualitative difference in the imbibition dynamics in these two cases and indicate that MD simulation is a useful tool to investigate details of the imbibition mechanisms at t...
Abstract Oil–water emulsions are commonly encountered at various stages of petroleum production. Fo...
The fundamental understanding of fluids transportation in confined nanopores is essential for ground...
Oil recovery is an industrial process that injects aqueous solutions into an oil reservoir to pump o...
We present Molecular Dynamics (MD) simulations of the imbibition process in nanopores in c...
We investigated the effect of surfactants on the oil displacement process inside a nanoscale silica ...
Recovery of crude oil in rock nanopores plays an important role in the petroleum industry. In this w...
Understanding the mechanisms of CO2 extraction or flooding are vital for enhancing oil recovery (EOR...
Molecular dynamics simulations have been performed on amphiphilic molecules, oil and water to invest...
Master's thesis in Petroleum engineeringMore than 50 % of the proven oil resources in the world are ...
Imbibition is one of the key phenomena underlying processes such as oil recovery and others. In this...
For enhanced oil recovery (EOR) applications, the oil/water flow characteristics during the flooding...
Imbibition has been proposed as an important means by which to recover oil from low permeability res...
CO2-enhanced oil recovery (CO2-EOR) technology has shown great application potential in the developm...
The escalating volume of oily wastewater, particularly produced water, necessitates efficient means ...
Despite the volatility in the energy market, various predications have shown that the demand for oil...
Abstract Oil–water emulsions are commonly encountered at various stages of petroleum production. Fo...
The fundamental understanding of fluids transportation in confined nanopores is essential for ground...
Oil recovery is an industrial process that injects aqueous solutions into an oil reservoir to pump o...
We present Molecular Dynamics (MD) simulations of the imbibition process in nanopores in c...
We investigated the effect of surfactants on the oil displacement process inside a nanoscale silica ...
Recovery of crude oil in rock nanopores plays an important role in the petroleum industry. In this w...
Understanding the mechanisms of CO2 extraction or flooding are vital for enhancing oil recovery (EOR...
Molecular dynamics simulations have been performed on amphiphilic molecules, oil and water to invest...
Master's thesis in Petroleum engineeringMore than 50 % of the proven oil resources in the world are ...
Imbibition is one of the key phenomena underlying processes such as oil recovery and others. In this...
For enhanced oil recovery (EOR) applications, the oil/water flow characteristics during the flooding...
Imbibition has been proposed as an important means by which to recover oil from low permeability res...
CO2-enhanced oil recovery (CO2-EOR) technology has shown great application potential in the developm...
The escalating volume of oily wastewater, particularly produced water, necessitates efficient means ...
Despite the volatility in the energy market, various predications have shown that the demand for oil...
Abstract Oil–water emulsions are commonly encountered at various stages of petroleum production. Fo...
The fundamental understanding of fluids transportation in confined nanopores is essential for ground...
Oil recovery is an industrial process that injects aqueous solutions into an oil reservoir to pump o...