Javascript must be enabled to continue!
Selecting the "Right" ASP Model by History Matching Coreflood Experiments
View through CrossRef
Abstract
In order to design and analyze Alkaline Surfactant Polymer (ASP) pilots and to generate reliable ASP field forecasts a robust scalable modeling workflow for the ASP process is required. A starting point of such a workflow is to carry out ASP coreflood tests and history match those using numerical models. This allows validation of the models and generates a set of chemical flood parameters that can be used for field-scale simulation forecasts.
It is well established that lowering of interfacial tension due to maximum of in-situ generated soap with injected surfactant and improved mobility control due to the polymer play a crucial role in the ASP process. Therefore, all models for the ASP process take into account these mechanisms in one way or the other. However, ASP models can differ in the detail in which (geo-) chemical reactions and the phase behavior are addressed. Inclusion of the more details into the numerical model could result in better understanding and more accurate prediction, but it comes at a price, viz., it requires more measured input data and increases computational time. Thus, depending on the accuracy requirements, available experimental data and time the modeling of ASP flood can be performed using different simulation approaches.
This paper describes several modeling approaches for ASP. We start with a brief description of these methods and their input requirements. Then we compare the ASP coreflood simulation results demonstrating the advantages and disadvantages of presented approaches. We also demonstrate that both ASP models can be applied at the field level by simulating an ASP flood in a sector model. Finally we give some recommendations and guidelines on how and when the proposed models should be used.
Title: Selecting the "Right" ASP Model by History Matching Coreflood Experiments
Description:
Abstract
In order to design and analyze Alkaline Surfactant Polymer (ASP) pilots and to generate reliable ASP field forecasts a robust scalable modeling workflow for the ASP process is required.
A starting point of such a workflow is to carry out ASP coreflood tests and history match those using numerical models.
This allows validation of the models and generates a set of chemical flood parameters that can be used for field-scale simulation forecasts.
It is well established that lowering of interfacial tension due to maximum of in-situ generated soap with injected surfactant and improved mobility control due to the polymer play a crucial role in the ASP process.
Therefore, all models for the ASP process take into account these mechanisms in one way or the other.
However, ASP models can differ in the detail in which (geo-) chemical reactions and the phase behavior are addressed.
Inclusion of the more details into the numerical model could result in better understanding and more accurate prediction, but it comes at a price, viz.
, it requires more measured input data and increases computational time.
Thus, depending on the accuracy requirements, available experimental data and time the modeling of ASP flood can be performed using different simulation approaches.
This paper describes several modeling approaches for ASP.
We start with a brief description of these methods and their input requirements.
Then we compare the ASP coreflood simulation results demonstrating the advantages and disadvantages of presented approaches.
We also demonstrate that both ASP models can be applied at the field level by simulating an ASP flood in a sector model.
Finally we give some recommendations and guidelines on how and when the proposed models should be used.
Related Results
Compositional Modeling and Calibration of ASP Carbonate Corefloods
Compositional Modeling and Calibration of ASP Carbonate Corefloods
Abstract
The shortage and high cost of CO2 and/or Hydrocarbon gases, in some areas, makes chemical EOR a practical option for tertiary oil recovery. Alkaline, Surfac...
The Impact of Ion Exchange and Surfactant Partitioning on ASP Modeling, A Brown Offshore Field
The Impact of Ion Exchange and Surfactant Partitioning on ASP Modeling, A Brown Offshore Field
Abstract
In order to design and analyse Alkaline Surfactant Polymer (ASP) pilots and generate reliable field forecasts, a robust scalable modeling workflow for the A...
ASP Flood After a Polymer Flood vs. ASP Flood After a Water Flood
ASP Flood After a Polymer Flood vs. ASP Flood After a Water Flood
Abstract
Alkaline-surfactant-polymer (ASP) flooding is an effective technique to improve oil recovery. It has been applied typically after a water flood. Recently, t...
Study of the Effect of ASP Solution Viscoelasticity on Displacement Efficiency
Study of the Effect of ASP Solution Viscoelasticity on Displacement Efficiency
Abstract
In application of Alkali-surfactant-polymer flooding, people always follow after ultra low IFT and negate the effect of ASP solution viscoelasticity on disp...
Timing of ASP Injection for Viscous Oil Recovery
Timing of ASP Injection for Viscous Oil Recovery
Abstract
Alkaline-surfactant-polymer (ASP) flooding of a viscous oil (100 cp) is studied here in a two-dimensional (2D) sand pack. An ASP formulation was developed b...
P-983. A Nationwide Survey of the Current Status of Antimicrobial Stewardship Programs in Korean Hospitals, 2024
P-983. A Nationwide Survey of the Current Status of Antimicrobial Stewardship Programs in Korean Hospitals, 2024
Abstract
Background
With growing global recognition of the importance of antimicrobial stewardship programs (ASP), the So...
A Successful ASP Sweep Evaluation in a Field Pilot
A Successful ASP Sweep Evaluation in a Field Pilot
Abstract
A field in southern Oman has been identified for conducting an alkaline surfactant polymer (ASP) pilot project to enhance oil recovery. The potential benefi...
Commercial ASP Flood Test in Daqing Oil Field
Commercial ASP Flood Test in Daqing Oil Field
Abstract
Alkali-Surfactant-Polymer (ASP) pilot test with small well spacing and the test with enlarged well spacing for commercial ASP flood are successful in Daqing...

