Abstract
On artificial long cores with multiple measuring points and standard cores, laboratory experiments were carried out for the rheological behavior and oil displacement capability of polymer (HPAM) solution with mass concentration of 1500 mg/L. The relative molecular mass of polymer was 1200 × 104. The pressure and oil saturation distribution were analyzed by using the numerical model. The results indicated that the rheological behavior of polymer solution was shear thinning and shear thickening. Moreover, the longer the migration distance was, the narrower the shear rate range was, and the smaller the critical shear rate was. The maximum injection pressure was 5.67 Mpa, and the stable value was 5.21 Mpa when injected the polymer solution into the cores with permeability of 50 × 10−3 μm2 and length of 85 cm. The resistance coefficient of inlet and outlet was stable at 185 and 6, respectively, which indicated that the polymer solution was blocked at near area of inlet and the oil displacement capacity was limited at near area of outlet. The oil recovery of polymer flooding was increased 8.9% point compared with that of water flooding when injected 0.3 PV polymer solution into the standard core after the water cut reached 70%. The variation with the migration distance of rheological behavior and the oil displacement capacity of polymer solution was important for further study on the matching of low permeability reservoir with the polymer solution.
Copyright 2017, Shaanxi Petroleum Society.
This paper was prepared for presentation at the 2017 International Petroleum and Petrochemical Technology Conference in Beijing, China, 20–22 March, 2017.
This paper was selected for presentation by the IFEDC&IPPTC Committee following review of information contained in an abstract submitted by the author(s). Contents of the paper, as presented, have not been reviewed by the IFEDC&IPPTC Committee and are subject to correction by the author(s). The material does not necessarily reflect any position of the IFEDC&IPPTC Committee, its members. Papers presented at the Conference are subject to publication review by Professional Committee of Petroleum Engineering of Shaanxi Petroleum Society. Electronic reproduction, distribution, or storage of any part of this paper for commercial purposes without the written consent of Shaanxi Petroleum Society is prohibited. Permission to reproduce in print is restricted to an abstract of not more than 300 words; illustrations may not be copied. The abstract must contain conspicuous acknowledgment of IFEDC&IPPTC. Contact email: paper@ifedc.org or paper@ipptc.org.
Access this chapter
Tax calculation will be finalised at checkout
Purchases are for personal use only
References
Hu B, Liu H, Li L (1997) Polymer flooding production engineering. Petroleum Industry Press, Beijing
Cao G, Liu T, Ba Y, Xu D, Wang T, Zhao F, Shu Q (2013) Microbial flooding after polymer flooding pilot test in Ng3 of Zhong1 area, Gudao oilfield. Pet Geol Recovery Effi 20(6):94–96
Liu Z, Wang Q, Sun Y et al (2014) Study and application of new technological limit for polymer flooding in field application. Pet Geol Recovery Effi 21(2):22–24
Xie X, Feng G, Liu L et al (2015) Study on enhanced oil recovery technology after polymer flooding in offshore oilfield. Pet Geol Recovery Effi 22(1):93–97
Wang DM (2014) Some thoughts about potential of oil recovery efficiency and development model transition in Shengli district. Pet Geol Recovery Effi 21(4):1–4
Wang Q, Ji B, Nie J (2014) M. Calculation methods of sweep efficiency under different viscosity ratios for polymer flooding process. Oil Gas Geol 35(4):551–555
Acknowledgements
The authors would like to express their appreciation for the help from the experts of American Apartment in RIPED and the help from CUPB.
Author information
Authors and Affiliations
Corresponding author
Editor information
Editors and Affiliations
Rights and permissions
Copyright information
© 2019 Springer Nature Singapore Pte Ltd.
About this paper
Cite this paper
Liu, J., Chen, W., Lei, Z.X., Lei, G., Li, Y.B., Li, W.R. (2019). Dynamic Variation of Rheological Behavior and Displacement of Polymer Flooding in Mid-Low Permeability Cores. In: Qu, Z., Lin, J. (eds) Proceedings of the International Field Exploration and Development Conference 2017. Springer Series in Geomechanics and Geoengineering. Springer, Singapore. https://doi.org/10.1007/978-981-10-7560-5_56
Download citation
DOI: https://doi.org/10.1007/978-981-10-7560-5_56
Published:
Publisher Name: Springer, Singapore
Print ISBN: 978-981-10-7559-9
Online ISBN: 978-981-10-7560-5
eBook Packages: EngineeringEngineering (R0)