The blockage and alteration of wettability in reservoirs caused by asphaltene deposits are problems that contribute to poor oil recovery performance during carbon dioxide (CO2) injection. Oil production and reservoir damage are both controlled by macroscopic interlayer heterogeneity and microscopic pore-throat structure and may be optimized by the choice of flooding method. In this work, the residual oil distribution and the permeability decline caused by organic and inorganic precipitation after miscible CO2 flooding and water-alternating-CO2 (CO2-WAG) flooding have been studied by carrying out core-flooding experiments on a model heterogeneous three-layer reservoir. For CO2, flooding experimental results indicate that the low-permeability...
Permeability reduction induced by asphaltene precipitation during gas injection is one of the seriou...
CO2 flooding is a proven enhanced oil recovery (EOR) technique and is also considered as a potential...
Carbon dioxide (CO2) has been proven to be an extremely successful enhanced oil recovery method to i...
The process of CO2-SAG flooding involves conventional miscible CO2 flooding until breakthrough (BT),...
CO2 flooding has proven to be an effective technique for enhanced oil recovery. However, the applica...
Pore and throat blockage and wettability alteration caused by asphaltene deposition are serious prob...
The process of CO2-SAG flooding involves conventional miscible CO2 flooding until breakthrough (BT),...
Hydrocarbon gas injection has proven to be one of the most efficient Enhanced Oil Recovery (EOR) met...
In order to quantitatively evaluate the pore-scale formation damage of tight sandstones caused by as...
In order to quantitatively evaluate the pore-scale formation damage of tight sandstones caused by as...
Asphaltene deposition is a common phenomenon during CO2 flooding in ultralow permeability reservoirs...
Asphaltenes, precipitated from oil due to pressure, temperature, or oil compositional changes, can a...
In this work, the precipitation of asphaltene from a Malaysian light oil reservoir was studies. A se...
Carbon dioxide (CO2 ) flooding has been applied extensively worldwide to improve oil recovery from h...
Carbon dioxide (CO2 ) flooding has been applied extensively worldwide to improve oil recovery from h...
Permeability reduction induced by asphaltene precipitation during gas injection is one of the seriou...
CO2 flooding is a proven enhanced oil recovery (EOR) technique and is also considered as a potential...
Carbon dioxide (CO2) has been proven to be an extremely successful enhanced oil recovery method to i...
The process of CO2-SAG flooding involves conventional miscible CO2 flooding until breakthrough (BT),...
CO2 flooding has proven to be an effective technique for enhanced oil recovery. However, the applica...
Pore and throat blockage and wettability alteration caused by asphaltene deposition are serious prob...
The process of CO2-SAG flooding involves conventional miscible CO2 flooding until breakthrough (BT),...
Hydrocarbon gas injection has proven to be one of the most efficient Enhanced Oil Recovery (EOR) met...
In order to quantitatively evaluate the pore-scale formation damage of tight sandstones caused by as...
In order to quantitatively evaluate the pore-scale formation damage of tight sandstones caused by as...
Asphaltene deposition is a common phenomenon during CO2 flooding in ultralow permeability reservoirs...
Asphaltenes, precipitated from oil due to pressure, temperature, or oil compositional changes, can a...
In this work, the precipitation of asphaltene from a Malaysian light oil reservoir was studies. A se...
Carbon dioxide (CO2 ) flooding has been applied extensively worldwide to improve oil recovery from h...
Carbon dioxide (CO2 ) flooding has been applied extensively worldwide to improve oil recovery from h...
Permeability reduction induced by asphaltene precipitation during gas injection is one of the seriou...
CO2 flooding is a proven enhanced oil recovery (EOR) technique and is also considered as a potential...
Carbon dioxide (CO2) has been proven to be an extremely successful enhanced oil recovery method to i...