Iso-Permeability Point Trail Method to Determine the Relative Permeability Curve for a New Amphiphilic Polymer Flooding

Author:

Wang Xudong12,Ju Binshan1,Jin Yi2,Tian Yapeng3

Affiliation:

1. School of Energy Resources, China University of Geosciences Beijing, Beijing 100083, China

2. State Key Laboratory of Offshore Oil Exploitation, CNOOC Research Institute, Beijing 100028, China

3. College of Petroleum Engineering, Xi’an Shiyou University, Xi’an 710312, China

Abstract

Amphiphilic-polymer flooding, which can increase water viscosity, decrease oil viscosity, and improve oil displacement efficiency, is a promising oil exploitation method for heavy oil. Due to oil–water emulsification, shear-thinning, and changes in oil viscosity when determining the relative permeability data of new amphiphilic polymers, the conventional J.B.N. method is not accurate. This paper presents a new method called the iso-permeability point trial method to determine the relative permeability curve by combining the J.B.N. method, the Corey model, and the relationship between water saturation and the relative permeability ratio. To avoid using polymer viscosity, a mathematical equation was derived based on the characteristics of the relative permeability curve. The results indicate that the new method is feasible and the obtained curve is more reasonable and smooth. The influence of concentration, permeability, and oil viscosity on amphiphilic-polymer displacement relative permeability was also analyzed, demonstrating that under the same water saturation, the water relative permeability is lower than that of water flooding but the oil relative permeability is bigger, which manifests as the iso-permeability point moves to the right and results in a lower residual oil saturation. In addition, the aforementioned trends are more obvious when the amphiphilic-polymer concentration is high, formation permeability is low, and oil viscosity is low.

Funder

Ministry of Science and Technology of China

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

Reference49 articles.

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2. Yi, J., Jian, Z., Engao, T., and Wang, X. (2023, January 1). A Successful Activator Flooding Pilot Test in Offshore Oilfield: A Comprehensive Evaluation and Interpretation. Proceedings of the 2023 International Petroleum Technology Conference, Bangkok, Thailand.

3. New water soluble amphiphilic block copolymer for emulsion flooding of heavy oil;Chen;Oilfield Chem.,2019

4. Study on the design and synthesis of amphiphilic polymers and their synergistic systems (X) Reservoir adaptability;Kang;China Surfactant Deterg. Cosmet.,2020

5. Study on the design and synthesis of amphiphilic polymers and their synergistic systems (XII) Enhanced oil recovery;Kang;China Surfactant Deterg. Cosmet.,2020

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