One of the primary methods for bitumen and heavy oil recovery is a steam-assisted gravity drainage (SAGD) process. However, the mechanisms related to wettability alteration under the SAGD process still need to be fully understood. In this study, we used MD simulation to evaluate the wettability alteration under a steam injection process for bitumen and heavy oil recovery. Various oil droplets with different asphaltene contents were considered to determine the effect of an asphaltene content on the adsorption of the oil droplets onto quartz surfaces and wettability alteration. Based on the MD simulation outputs, the higher the asphaltene content, the higher the adsorption energy between the bitumen/heavy oil and quartz surfaces due to coulom...
ABSTRACT: It is well known that asphaltene molecules play a significant role in stabilizing emulsion...
In this article, the importance of colloids and interfaces in thermal heavy oil or bitumen extracti...
Steam-assisted gravity drainage (SAGD) is a commercially successful technology for heavy oil and bit...
CO2-enhanced oil recovery (CO2-EOR) technology has shown great application potential in the developm...
The aggregates of asphaltene and resin molecules play an important role in stabilizing heavy crude o...
Molecular dynamics (MD) simulations and optical contact angle measurements were performed to shed li...
The questions of reservoir wettability have been approached in this project from three directions. F...
The stabilization of heavy oil plays an important role in the aggregation of asphaltene and resin mo...
We present Molecular Dynamics (MD) simulations of the imbibition process in nanopores in c...
During the production of crude oil, asphaltenes are prone to precipitate due to the changes of exter...
Asphaltene precipitation during natural depletion and enhanced oil recovery (EOR) methods is one of ...
In this study, surfactants were used to enhance heavy oil–solid separation, and a detailed mechanism...
Herein, detachment of oil molecules from perfect and defective aluminum oxide surfaces in an aqueous...
Steam-assisted gravity drainage (SAGD) is an in-situ bitumen extraction technique that significantly...
Reservoir wettability is controlled by crude oil/rock/brine interactions. Wettability plays an impor...
ABSTRACT: It is well known that asphaltene molecules play a significant role in stabilizing emulsion...
In this article, the importance of colloids and interfaces in thermal heavy oil or bitumen extracti...
Steam-assisted gravity drainage (SAGD) is a commercially successful technology for heavy oil and bit...
CO2-enhanced oil recovery (CO2-EOR) technology has shown great application potential in the developm...
The aggregates of asphaltene and resin molecules play an important role in stabilizing heavy crude o...
Molecular dynamics (MD) simulations and optical contact angle measurements were performed to shed li...
The questions of reservoir wettability have been approached in this project from three directions. F...
The stabilization of heavy oil plays an important role in the aggregation of asphaltene and resin mo...
We present Molecular Dynamics (MD) simulations of the imbibition process in nanopores in c...
During the production of crude oil, asphaltenes are prone to precipitate due to the changes of exter...
Asphaltene precipitation during natural depletion and enhanced oil recovery (EOR) methods is one of ...
In this study, surfactants were used to enhance heavy oil–solid separation, and a detailed mechanism...
Herein, detachment of oil molecules from perfect and defective aluminum oxide surfaces in an aqueous...
Steam-assisted gravity drainage (SAGD) is an in-situ bitumen extraction technique that significantly...
Reservoir wettability is controlled by crude oil/rock/brine interactions. Wettability plays an impor...
ABSTRACT: It is well known that asphaltene molecules play a significant role in stabilizing emulsion...
In this article, the importance of colloids and interfaces in thermal heavy oil or bitumen extracti...
Steam-assisted gravity drainage (SAGD) is a commercially successful technology for heavy oil and bit...