Evaluation of the EOR Potential in Hydraulically Fractured Shale Oil Reservoirs by Cyclic Gas Injection
Оценка потенциала ПОВ в гидроразрывных сланцевых нефтяных резервуарах методом циклической закачки газа
2015-04-03
SCID: 54.1/b5jc4muf
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cyclic gas injectionenhanced oil recoveryhydraulically fractured shale oilmiscibilitysimulation study
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Abstract (AI)
Gas flooding in fractured reservoirs may not be an effective avenue for improving oil recovery because the injected fluids could break-through to production wells via the fracture network. A cyclic injection scheme is one way to solve this problem. In this study, the authors propose to use cyclic gas injection to improve hydraulically fractured shale oil recovery. They used a simulation approach to evaluate the enhanced oil recovery (EOR) potential from cyclic gas injection. The simulation results indicate that total oil recovery can be increased up to 29% by cyclic gas injection, compared with the 6.5% recovery from the primary depletion. If a higher pressure is used to reach fully miscibility with reservoir oil and more cycles are employed, more oil recovery is expected.
Key Findings
1
Cyclic gas injection applied to hydraulically fractured shale oil reservoirs can increase total oil recovery up to 29% in simulations.
2
Cyclic injection mitigates the problem of injected gas breaking through fracture networks that makes continuous gas flooding ineffective.
3
Higher injection pressure that achieves full miscibility with reservoir oil and increasing the number of cycles are expected to further improve oil recovery.
4
Primary depletion (no injection) yielded only 6.5% recovery in the simulated scenarios, providing a baseline for comparison.
Research Object
Hydraulically fractured shale oil reservoirs subjected to cyclic gas injection
Research Subject
Enhanced oil recovery (EOR) potential and oil production improvement achieved by cyclic gas injection (including recovery increase, miscibility effects at higher pressure, and cycle count impacts)
Publication Details
Publication Date
2015-04-03
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