Continuous CO2 Injection for Simultaneous Geological Storage and Enhanced Oil Recovery: Experimental Investigation on the Effects of Permeability Heterogeneity
Shayan Faghihi,
Jamshid Moghadasi and
Mohammad Jamialahmadi
Greenhouse Gases: Science and Technology, 2025, vol. 15, issue 4, 458-471
Abstract:
This study investigated the effects of absolute permeability on the performance of continuous CO2 injection for a CO2‐enhanced oil recovery and storage process (CO2‐EOR and Storage) in a water‐invaded zone. First, the CO2 solubility in dead‐oil and brine samples and the oil swelling factor were measured using a visual high‐pressure–high‐temperature cell. Following this, several continuous immiscible CO2 injection core flooding tests at a constant rate of 0.5 cm3/min and in situ reservoir conditions were conducted. The core samples were taken from a carbonate depleted oil reservoir located in southern Iran. The results revealed that more than 30% of the injected CO2 was trapped primarily by residual‐phase and solubility‐trapping mechanisms. In addition, it was found that the core samples with lower absolute permeability provided higher storage efficiency. In contrast, the ones with the highest absolute permeability showed the least potential for CO2 storage. From the EOR point of view, on average, 18% of the residual oil was produced mechanistically through swelling as well as physical displacement. Although the results showed a declining trend in the amount of oil produced with increased absolute permeability, no clear relationship could be established.
Date: 2025
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https://doi.org/10.1002/ghg.2350
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Persistent link: https://EconPapers.repec.org/RePEc:wly:greenh:v:15:y:2025:i:4:p:458-471
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