Quantitative Characterization of Excess Pressure Gradient in the Upper Interval of Es4 Member of Dongying Depression and Its Indicative Significance for Oil Migration and Accumulation
Abstract
:1. Introduction
2. Geological Setting
3. Samples and Methods
3.1. Samples and Carbazole Analysis
3.2. Homogenization Temperature of Oil and Aqueous Inclusions
3.3. Drill-Stem Test Data
3.4. Excess Pressure Prediction Using Well Log Data
3.5. Excess Pressure Gradient
4. Results and Discussions
4.1. Drill Stem Tests
4.2. Excess Pressure
4.2.1. Well-Log Responses to Overpressure
4.2.2. Distribution of Excess Pressure
4.3. Distribution of Excess Pressure Gradient
4.4. Indicative Significance for Oil Migration and Accumulation
4.4.1. The Excess Pressure Gradient Indicates the Direction of Oil Migration
4.4.2. Driven Force of Oil Migration
5. Conclusions
- (1)
- The measured excess pressure in the Es4s member ranges from 5.65 MPa to 30.93 MPa. The results of overpressure prediction show that the overpressure in the Es4s member is mainly distributed in the Lijin Sag, Minfeng Sag, and Niuzhuang Sag, and the excess pressure ranges from 5 MPa to 30 MPa, while the excess pressure in the Boxing Sag is mainly less than 15 MPa.
- (2)
- The new method can calculate the values and the directions of the excess pressure gradient. The values of the excess pressure gradient in the Es4s member of the Dongying Depression present as “low-high-low” from the sag area to the periphery of the depression. The directions of the excess pressure gradient are consistent with the directions of oil migration indicated by the ratio of carbazole compounds, which suggests that the directions of the excess pressure gradient can be used to trace oil migration and accumulation.
- (3)
- The oil migration in overpressured areas is driven by excess pressure. With the excess pressure decreasing, the net buoyancy kicks gradually in the high-excess-pressure-gradient areas. Before the net buoyancy overcomes the capillary resistance and drives the oil migration, the oil will continue accumulating at the reservoir until the oil column provides enough net buoyancy to overcome the capillary resistance.
- (4)
- The distribution of the excess pressure gradient in the Es4s formation in the study area has a good matching relationship with the distribution of the oil field. The oil from the Es4s source rock is mainly distributed in the areas with a high excess pressure gradient or areas with a low excess pressure gradient and low excess pressure (area II).
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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No. | Well | Depth | Weight (mg) | Saturated Hydrocarbons (mg) | Aromatic Hydrocarbons (mg) | Resins (mg) | Asphaltene (mg) |
---|---|---|---|---|---|---|---|
1 | B423 | 2951 | 60.6 | 29.6 | 1.1 | 5.2 | 7.2 |
2 | B706 | 1478 | 55.8 | 34.4 | 9.8 | 6.4 | 8.7 |
3 | N19 | 3043 | 58.7 | 33.6 | 9.7 | 6.8 | 6.5 |
4 | W120 | 2435 | 62.2 | 2.8 | 13.1 | 8.9 | 5.1 |
5 | G89 | 3046 | 63.6 | 39.5 | 9.1 | 4.1 | 6.9 |
6 | G892 | 2995 | 59.9 | 30.7 | 10.5 | 8.3 | 4.6 |
7 | C97 | 2417 | 96 | 52.8 | 15.8 | 10.4 | 7.8 |
Well | C (μg/g) | MC (μg/g) | DMC (μg/g) | BC (μg/g) | 1,8-/2,7-DMC | [a]/[a] + [c] | Migration Distance (km) | Relative Distance to Source Rocks |
---|---|---|---|---|---|---|---|---|
B423 | 0.87 | 3.51 | 9.03 | 1.23 | 4.44 | 0.58 | 12.24 | Short distance |
B706 | 0.64 | 3.30 | 11.40 | 2.28 | 7.01 | 0.57 | Long distance | |
N19 | 3.55 | 13.44 | 19.64 | 1.67 | 2.17 | 0.56 | 6.59 | Short distance |
W120 | 1.61 | 6.34 | 4.79 | 2.27 | 2.43 | 0.53 | Long distance | |
G89 | 3.85 | 11.47 | 21.87 | 4.93 | 5.33 | 0.58 | 2.65 | Short distance |
G892 | 2.34 | 8.23 | 18.33 | 3.11 | 5.72 | 0.57 | Long distance | |
C97 | 2.32 | 5.49 | 10.51 | 2.55 | 4.77 | 0.58 | 2.18 | Short distance |
C89 | 5.01 | 12.76 | 23.66 | 4.31 | 4.90 | 0.52 | Long distance |
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Zhao, W.; He, S.; Wang, Y.; Wang, X.; Jia, G.; Guo, X.; Qiu, Y.; Chen, J. Quantitative Characterization of Excess Pressure Gradient in the Upper Interval of Es4 Member of Dongying Depression and Its Indicative Significance for Oil Migration and Accumulation. Energies 2022, 15, 3554. https://doi.org/10.3390/en15103554
Zhao W, He S, Wang Y, Wang X, Jia G, Guo X, Qiu Y, Chen J. Quantitative Characterization of Excess Pressure Gradient in the Upper Interval of Es4 Member of Dongying Depression and Its Indicative Significance for Oil Migration and Accumulation. Energies. 2022; 15(10):3554. https://doi.org/10.3390/en15103554
Chicago/Turabian StyleZhao, Wen, Sheng He, Yongshi Wang, Xiao Wang, Guanghua Jia, Xiaowen Guo, Yibo Qiu, and Jiaxu Chen. 2022. "Quantitative Characterization of Excess Pressure Gradient in the Upper Interval of Es4 Member of Dongying Depression and Its Indicative Significance for Oil Migration and Accumulation" Energies 15, no. 10: 3554. https://doi.org/10.3390/en15103554
APA StyleZhao, W., He, S., Wang, Y., Wang, X., Jia, G., Guo, X., Qiu, Y., & Chen, J. (2022). Quantitative Characterization of Excess Pressure Gradient in the Upper Interval of Es4 Member of Dongying Depression and Its Indicative Significance for Oil Migration and Accumulation. Energies, 15(10), 3554. https://doi.org/10.3390/en15103554