Recent Advances in Polymer Flooding in China

Author:

Song Kaoping12,Tao Jianwen2,Lyu Xiuqin3,Xu Yang4,Liu Shaopeng5,Wang Zhengbo6,Liu Huifeng78,Zhang Yuxuan1,Fu Hongtao1,Meng En1,Liu Mingxi1,Guo Hu1

Affiliation:

1. Unconventional Petroleum Research Institute, China University of Petroleum-Beijing, Beijing 102249, China

2. School of Petroleum Engineering, Northeast Petroleum University, Daqing 163318, China

3. No.1 Oil Production Plant, Sinopec Northwest Oil Field Company, Urumqi 830011, China

4. Geological Research Institute, China National Logging Company Ltd., Xi’an 710077, China

5. CNOOC EnerTech-Drilling & Production Company, Tianjin 300450, China

6. Oilfield Chemistry Department, CNPC Research Institute of Petroleum Exploration and Development, Beijing 100083, China

7. Overseas Engineering Technology Research Institute, CNPC Engineering Technology R&D Company Limited, Beijing 102206, China

8. Wells Engineering Department, CNPC R&D (DIFC) Company Limited, Dubai 415747, United Arab Emirates

Abstract

Polymer flooding is drawing lots of attention because of the technical maturity in some reservoirs. The first commercial polymer flooding in China was performed in the Daqing oilfield and is one of the largest applications in the world. Some laboratory tests from Daqing researchers in China showed that the viscoelasticity of high molecular weight polymers plays a significant role in increasing displacement efficiency. Hence, encouraged by the conventional field applications and new findings on the viscoelasticity effect of polymers on residual oil saturation (ROS), some high-concentration high-molecular-weight (HCHMW) polymer-flooding field tests have been conducted. Although some field tests were well-documented, subsequent progress was seldom reported. It was recently reported that HCHMW has a limited application in Daqing, which does not agree with observations from laboratory core flooding and early field tests. However, the cause of this discrepancy is unclear. Thus, a systematic summary of polymer-flooding mechanisms and field tests in China is necessary. This paper explained why HCHMW is not widely used when considering new understandings of polymer-flooding mechanisms. Different opinions on the viscoelasticity effect of polymers on ROS reduction were critically reviewed. Other mechanisms of polymer flooding, such as wettability change and gravity stability effect, were discussed with regard to widely reported laboratory tests, which were explained in terms of the viscoelasticity effects of polymers on ROS. Recent findings from Chinese field tests were also summarized. Salt-resistance polymers (SRPs) with good economic performance using produced water to prepare polymer solutions were very economically and environmentally promising. Notable progress in SRP flooding and new amphiphilic polymer field tests in China were summarized, and lessons learned were given. Formation blockage, represented by high injection pressure and produced productivity ability, was reported in several oil fields due to misunderstanding of polymers’ injectivity. Although the influence of viscoelastic polymers on reservoir conditions is unknown, the injection of very viscous polymers to displace medium-to-high viscosity oils is not recommended. This is especially important for old wells that could cause damage. This paper clarified misleading notions on polymer-flooding implementations based on theory and practices in China.

Funder

Science Foundation of China University of Petroleum

Natural Science Foundation

Publisher

MDPI AG

Subject

Chemistry (miscellaneous),Analytical Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Molecular Medicine,Drug Discovery,Pharmaceutical Science

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