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Article

Unit-Scale Dynamic Reserve Updating in Fracture–Vuggy Carbonates Using Water-Body- and Heterogeneity-Corrected Dynamic Methods

1
Oil Production Plant No. 1, Sinopec Northwest Oilfield Company, Korla 841000, China
2
State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Southwest Petroleum University, Chengdu 610500, China
*
Author to whom correspondence should be addressed.
Energies 2026, 19(11), 2499; https://doi.org/10.3390/en19112499
Submission received: 27 April 2026 / Revised: 12 May 2026 / Accepted: 19 May 2026 / Published: 22 May 2026
(This article belongs to the Topic Petroleum and Gas Engineering, 2nd edition)

Abstract

Fracture–vuggy carbonate reservoirs contain discrete caves, fractures, conduits, and vugs, which makes recoverable-reserve evaluation strongly dependent on connected volume rather than on total pore volume alone. This study develops a unit-scale dynamic reserve-updating method for the S48 unit, Tahe Oilfield, by coupling a water-body-corrected material-balance equation, a heterogeneity-corrected waterflood characteristic curve, and iterative geological-model calibration. The main methodological contribution is to convert static fracture–vug architecture into dynamically constrained connected subsystems: the parameter Rwo quantifies connected/injected water volume at the fracture–vug unit scale, whereas the coefficient M corrects the apparent slope of waterflood curves for non-uniform sweep and preferential pathways. The revised workflow was calibrated against pressure, production, injection-response, and history-matched simulation data. Sensitivity analysis indicates that the estimated reserve-utilization degree increased from 48.77% +/− 4.8 percentage points during natural depletion to 74.1% +/− 6.7 percentage points after gas injection, reflecting staged reserve mobilization within the tested uncertainty range. The method is intended for field-scale reserve updating in reservoirs with sufficient pressure-production data; its transferability remains limited by static-model quality, channeling intensity, and the single-unit validation scope of this study.
Keywords: fracture–vug unit; water-body parameter; heterogeneity coefficient; connected reserves; segmented waterflood diagnosis; static–dynamic integration; gas override; Tahe Oilfield fracture–vug unit; water-body parameter; heterogeneity coefficient; connected reserves; segmented waterflood diagnosis; static–dynamic integration; gas override; Tahe Oilfield

Share and Cite

MDPI and ACS Style

Wang, J.; Jiang, Z.; Yue, P.; Yuan, F.; Zhao, L.; Zhang, Y.; Liu, Z. Unit-Scale Dynamic Reserve Updating in Fracture–Vuggy Carbonates Using Water-Body- and Heterogeneity-Corrected Dynamic Methods. Energies 2026, 19, 2499. https://doi.org/10.3390/en19112499

AMA Style

Wang J, Jiang Z, Yue P, Yuan F, Zhao L, Zhang Y, Liu Z. Unit-Scale Dynamic Reserve Updating in Fracture–Vuggy Carbonates Using Water-Body- and Heterogeneity-Corrected Dynamic Methods. Energies. 2026; 19(11):2499. https://doi.org/10.3390/en19112499

Chicago/Turabian Style

Wang, Jiale, Zheng Jiang, Ping Yue, Feiyu Yuan, Liming Zhao, Ying Zhang, and Zilong Liu. 2026. "Unit-Scale Dynamic Reserve Updating in Fracture–Vuggy Carbonates Using Water-Body- and Heterogeneity-Corrected Dynamic Methods" Energies 19, no. 11: 2499. https://doi.org/10.3390/en19112499

APA Style

Wang, J., Jiang, Z., Yue, P., Yuan, F., Zhao, L., Zhang, Y., & Liu, Z. (2026). Unit-Scale Dynamic Reserve Updating in Fracture–Vuggy Carbonates Using Water-Body- and Heterogeneity-Corrected Dynamic Methods. Energies, 19(11), 2499. https://doi.org/10.3390/en19112499

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