Experimental study on surface-active polymer flooding for enhanced oil recovery: A case study of Daqing placanticline oilfield, NE China

Experiments on surface-active polymer flooding for enhanced oil recovery were carried out by detection analysis and modern physical simulation technique based on reservoirs and fluids in Daqing placanticline oilfield. The experimental results show that the surface-active polymer is different from ot...

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Main Authors: Qiannan YU, Yikun LIU, Shuang LIANG, Shuai TAN, Zhi SUN, Yang YU
Format: Article
Language:English
Published: KeAi Communications Co., Ltd. 2019-12-01
Series:Petroleum Exploration and Development
Online Access:http://www.sciencedirect.com/science/article/pii/S1876380419602740
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spelling doaj-e016e79249034103bc8f5e7bad4112182021-04-02T09:49:18ZengKeAi Communications Co., Ltd.Petroleum Exploration and Development1876-38042019-12-0146612061217Experimental study on surface-active polymer flooding for enhanced oil recovery: A case study of Daqing placanticline oilfield, NE ChinaQiannan YU0Yikun LIU1Shuang LIANG2Shuai TAN3Zhi SUN4Yang YU5College of Mechanical and Electrical Engineering, Guangdong University of Petrochemical Technology, Maoming 525000, ChinaSchool of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, China; Corresponding authorSchool of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, ChinaSchool of Chemical Engineering, Sichuan University, Chengdu 610065, ChinaPetroChina Daqing Oil Field Co. Ltd., Daqing 163002, ChinaPetroChina Daqing Oil Field Co. Ltd., Daqing 163002, ChinaExperiments on surface-active polymer flooding for enhanced oil recovery were carried out by detection analysis and modern physical simulation technique based on reservoirs and fluids in Daqing placanticline oilfield. The experimental results show that the surface-active polymer is different from other common polymers and polymer-surfactant systems in molecular aggregation, viscosity and flow capacity, and it has larger molecular coil size, higher viscosity and viscosifying capacity, and poorer mobility. The surface-active polymer solution has good performance of viscosity-increasing and viscosity retention, and has good performance of viscoelasticity and deformability to exert positive effects of viscosifying and viscoelastic properties. Surface-active polymer can change the chemical property of interface and reduce interfacial tension, making the reservoir rock turn water-wet, also it can emulsify the oil into relatively stable oil-in-water emulsion, and emulsification capacity is an important property to enhance oil washing efficiency under non-ultralow interfacial tension. The surface-active polymer flooding enlarges swept volume in two ways: Microscopically, the surface-active polymer has mobility control effect and can enter oil-bearing pores not swept by water to drive residual oil, and its mobility control effect has more contribution than oil washing capacity in enhancing oil recovery. Macroscopically, it has plugging capacity, and can emulsify and plug the dominant channels in layers with high permeability, forcing the injected fluid to enter the layer with medium or low permeability and low flow resistance, and thus enlarging swept volume. Key words: high water-cut oilfield, reservoir, surface-active polymer, oil-washing efficiency, swept volume, plug by emulsification, enhanced oil recoveryhttp://www.sciencedirect.com/science/article/pii/S1876380419602740
collection DOAJ
language English
format Article
sources DOAJ
author Qiannan YU
Yikun LIU
Shuang LIANG
Shuai TAN
Zhi SUN
Yang YU
spellingShingle Qiannan YU
Yikun LIU
Shuang LIANG
Shuai TAN
Zhi SUN
Yang YU
Experimental study on surface-active polymer flooding for enhanced oil recovery: A case study of Daqing placanticline oilfield, NE China
Petroleum Exploration and Development
author_facet Qiannan YU
Yikun LIU
Shuang LIANG
Shuai TAN
Zhi SUN
Yang YU
author_sort Qiannan YU
title Experimental study on surface-active polymer flooding for enhanced oil recovery: A case study of Daqing placanticline oilfield, NE China
title_short Experimental study on surface-active polymer flooding for enhanced oil recovery: A case study of Daqing placanticline oilfield, NE China
title_full Experimental study on surface-active polymer flooding for enhanced oil recovery: A case study of Daqing placanticline oilfield, NE China
title_fullStr Experimental study on surface-active polymer flooding for enhanced oil recovery: A case study of Daqing placanticline oilfield, NE China
title_full_unstemmed Experimental study on surface-active polymer flooding for enhanced oil recovery: A case study of Daqing placanticline oilfield, NE China
title_sort experimental study on surface-active polymer flooding for enhanced oil recovery: a case study of daqing placanticline oilfield, ne china
publisher KeAi Communications Co., Ltd.
series Petroleum Exploration and Development
issn 1876-3804
publishDate 2019-12-01
description Experiments on surface-active polymer flooding for enhanced oil recovery were carried out by detection analysis and modern physical simulation technique based on reservoirs and fluids in Daqing placanticline oilfield. The experimental results show that the surface-active polymer is different from other common polymers and polymer-surfactant systems in molecular aggregation, viscosity and flow capacity, and it has larger molecular coil size, higher viscosity and viscosifying capacity, and poorer mobility. The surface-active polymer solution has good performance of viscosity-increasing and viscosity retention, and has good performance of viscoelasticity and deformability to exert positive effects of viscosifying and viscoelastic properties. Surface-active polymer can change the chemical property of interface and reduce interfacial tension, making the reservoir rock turn water-wet, also it can emulsify the oil into relatively stable oil-in-water emulsion, and emulsification capacity is an important property to enhance oil washing efficiency under non-ultralow interfacial tension. The surface-active polymer flooding enlarges swept volume in two ways: Microscopically, the surface-active polymer has mobility control effect and can enter oil-bearing pores not swept by water to drive residual oil, and its mobility control effect has more contribution than oil washing capacity in enhancing oil recovery. Macroscopically, it has plugging capacity, and can emulsify and plug the dominant channels in layers with high permeability, forcing the injected fluid to enter the layer with medium or low permeability and low flow resistance, and thus enlarging swept volume. Key words: high water-cut oilfield, reservoir, surface-active polymer, oil-washing efficiency, swept volume, plug by emulsification, enhanced oil recovery
url http://www.sciencedirect.com/science/article/pii/S1876380419602740
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