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September 27, 2025Processes2 citationsOpen Access

Insights into Foamy Oil Phenomenon in Porous Media: Experimental and Numerical Investigation

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MSMorteza SabetiFTFarshid TorabiACAli Cheperli

Key Points

  • Bubble nucleation in porous media requires less energy and occurs more quickly compared to bulk phases, enhancing recovery efforts.
  • Advanced visual micromodels demonstrated a 2.5-fold increase in foamy oil volume in lower porosity settings, leading to more stable bubbles.
  • Oil production sharply declines at pressures below 1800 kPa, indicating critical gas saturation impacts during cyclic solvent injection.
  • Maintaining reservoir pressure above critical levels significantly enhances oil recovery performance during enhanced recovery operations.

Abstract

Cyclic Solvent Injection (CSI) is a method for enhanced heavy oil recovery, offering a reduced environmental impact. CSI processes typically involve fluid flow through both wormholes and the surrounding porous media in reservoirs. Therefore, understanding how foamy oil behavior differs between bulk phases and porous media is crucial for optimizing CSI operations. However, despite CSI’s advantages, limited research has explained why foamy oil, a key mechanism in CSI, displays weaker strength and stability in bulk phases than in porous media. To address this gap, three advanced visual micromodels were employed to monitor bubble behavior from nucleation through collapse under varying porosity with a constant pressure reduction. A sandpack depletion test in a large cylindrical model further validated the non-equilibrium bubble-reaction kinetics observed in the micromodels. Experiments showed that, under equivalent operating conditions, bubble nucleation in porous media required less energy and initiated more rapidly than in a bulk phase. Micromodels with lower porosity demonstrated up to a 2.5-fold increase in foamy oil volume expansion and higher bubble stability. Moreover, oil production in the sandpack declined sharply at pressures below 1800 kPa, indicating the onset of critical gas saturation, and yielded a maximum recovery of 37% of the original oil in place. These findings suggest that maintaining reservoir pressure above critical gas saturation pressure enhances oil recovery performance during CSI operations.

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Cite This Study

Sabeti et al. (2025) studied this question.

synapsesocial.com/papers/68d7b3e2eebfec0fc523699dhttps://doi.org/10.3390/pr13103067
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Application and Comparison of Two Models of Foamy Oil Behavior of Long Core Depletion Experiments2002 · 13 citations
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  4. 4A microvisual study of solution-gas-drive mechanisms in viscous oils2004 · 77 citations
  5. 5Development of a Bubble-Population Correlation for Foam-Flow Modeling in Porous Media1998 · 65 citations