The Effect of Alkaline on the Properties of Combination Flooding Agent During Long Distance Migration in Daqing Oilfield

Author:

Zhou Xiaofeng12,Wei Jianguang12ORCID,Yang Ying12,Le Shihao3,Jia Bao4,Shang Demiao5,Pu Baoping5,Zhang Zongxun6,Ma Yunfei7

Affiliation:

1. Key Laboratory of Continental Shale Hydrocarbon Accumulation and Efficient Development (Northeast Petroleum University) Ministry of Education Northeast Petroleum University Heilongjiang Daqing 163318 China dqpi.edu.cn

2. Institute of Unconventional Oil & Gas Northeast Petroleum University Daqing 163318 China dqpi.edu.cn

3. Daqing Oilfield Underground Operation Company Daqing 163453 China

4. CNPC Offshore Engineering Company Limited Tianjin 300400 China

5. School of Petroleum Engineering Northeast Petroleum University Heilongjiang Daqing 163318 China dqpi.edu.cn

6. Holding Petroleum Technical Services Ltd Beijing China

7. China Science and Technology Exchange Center Beijing China

Abstract

Abstract Combination flooding, which performs well on both sweep efficiency and displacement efficiency, is being extensively utilized in Daqing Oilfield. Surfactant-polymer (SP) flooding and alkaline-surfactant-polymer (ASP) flooding are two of the most used combination flooding techniques. According to the findings, alkaline lowers the oil-water interfacial tension and reduces the other component’s adsorption. Nevertheless, alkaline also has negative effects like scaling and cost increasing. Therefore, the use of alkaline in combination flooding is still disputed. In order to clarify the role of alkaline on combination flooding, SP and ASP flooding comparative tests are conducted with typical formula in Daqing Oilfield. A 3000-centimeter long model is built to simulate long distance migration for the property change study. During the flooding, fluid samples are obtained along the model, and the properties of the samples such as viscosity, interfacial tension (IFT), and components concentration are measured. According to the findings, the 3.60 percent higher recovery rate caused by ASP flooding compared to SP flooding is primarily due to the near inlet area. In ASP flooding, alkaline reduces polymer and surfactant near inlet dynamic retention by 20.16% and 13.43%, respectively, when compared to SP flooding. Besides, alkaline also maintains viscosity at a higher level and IFT at a lower level in the first third of the well spacing in ASP flooding. Consequently, the effects of alkaline are noticeable in the near inlet area and fade as distance increase.

Funder

Natural Science Foundation of Heilongjiang Province

Publisher

GeoScienceWorld

Subject

Geology

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