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A New Empirical Model for Viscosity of Sulfonated Polyacrylamide Polymers
Saeed Akbari1, Syed Mohammad Mahmood2, Hosein Ghaedi3
1Petroleum Engineering Department, Universiti Teknologi PETRONAS, Seri Iskandar, Tronoh 32610, Malaysia. akbari.sa70@gmail.com.
Polymers
|June 19, 2019
Summary
Sulfonated polyacrylamide polymers show promise for enhanced oil recovery. This study developed a predictive model for their viscosity, crucial for optimizing polymer flooding operations.
Area of Science:
- Polymer Chemistry
- Petroleum Engineering
- Rheology
Background:
- Sulfonated polyacrylamide (SPAM) copolymers are effective for enhanced oil recovery (EOR) via polymer flooding.
- Understanding SPAM solution viscosity is critical for optimizing EOR performance.
Purpose of the Study:
- To develop an empirical model for SPAM bulk viscosity.
- To investigate the influence of polymer characteristics, reservoir conditions, and operational variables on viscosity.
- To provide a tool for optimizing polymer flooding and predicting rheological data.
Main Methods:
- Design of Experiments (DOE) using Box-Behnken construct from Response Surface Methodology (RSM).
- 120 experimental runs for rheological data collection.
- Non-linear regression analysis and Sobol sensitivity analysis.
Main Results:
- An acceptable viscosity model was constructed with an Adjusted R-Squared value of 0.9624.
- Polymer concentration was identified as the most significant factor influencing viscosity.
- Significant interactions were found between various process parameters.
Conclusions:
- The developed empirical model accurately predicts SPAM solution viscosity.
- The model is suitable for optimizing polymer solution properties in polymer flooding.
- The model aids in predicting rheological data for polymer flood simulators.
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