Calculation of oil saturation in water-flooded layers based on the modified Archie model

Author:

Zhao Xiaodong1ORCID,Wang Weilong2,Li Qi3,Zhen Guinan2,Zhou Boyu4,Liu Beibei3,Qin Jiamin2,Zhang Yaxuan5

Affiliation:

1. China University of Petroleum (Beijing) at Karamay, School of Petroleum, Karamay, China. (corresponding author)

2. CNPC, Xinjiang Oilfield Company, Jiqing Oilfield Operation Zone, Changji, China.

3. CNPC, Huabei Oilfield Company, First Oil Production Plant, Renqiu, China.

4. CNPC, Xinjiang Oilfield Company, Exploration and Development Research Institute, Karamay, China.

5. China University of Petroleum (Beijing) at Karamay, School of Petroleum, Karamay, China and The University of Edinburgh, School of Geosciences, Edinburgh, UK.

Abstract

The Archie model is the foundation for calculating oil saturation, but limitations exist when the model is used to calculate oil saturation in the water-flooded layer. In the process of water injection, the dynamic change in oil saturation will be caused by the different degrees of water flooding and the properties of the injected water. Under the dynamic condition of water flooding, the Archie model is not suitable for calculating the oil saturation of water-flooded layers. By combining dynamic and static methods, a “double-ratio” model of the same sedimentary facies layer in the later development stage was established: [Formula: see text]. Based on the parameters of rock resistivity and formation water resistivity, an improved Archie model for calculating oil saturation in water-flooded layers of the same sedimentary facies was established. The interpretation of the actual data of the Zhenwu oilfield in Jiangsu, China finds that the average relative error between the calculation result and the core analysis result is 5.46%. The calculation result is reasonable, which offers a scientific basis for predicting the remaining oil distributions. The computational results have been validated by real data sets. This improved mode can provide experience-based guidance for the calculation of the remaining oil saturation of the water-flooded layer in the same sedimentary interpretation layer.

Funder

Young Natural Science Foundation of Xinjiang Province, China

China University of Petroleum (Beijing) Karamay Campus Research Start-up Fund

Publisher

Society of Exploration Geophysicists

Subject

Geology,Geophysics

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