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- W2020274013 abstract "Abstract Bubble nucleation and growth are the results of pressure depletion in solution-gas drive reservoirs. The interfaces of the generated bubbles move in pore spaces due to their expansion and applied pressure gradient. Mobilized bubbles might break into smaller bubbles or coalesce with other bubbles. The former event keeps the bubbles isolated and hinders their movement and increases critical gas saturation. Critical gas saturation signifies the onset of a continuous gas phase and is identified by a dramatic increase in GOR at the wellhead. Certain solution-gas drive heavy oil reservoirs (foamy oil reservoirs) demonstrate a low producing gas-oil ratio. A pore-scale model of porous media is modified to investigate the effect of pressure gradient and oil viscosity on the breakup of a solitary bubble. This event is then related to reservoir behaviour. The model is modified by including film flow and different breakup processes. New hydraulic conductivity formulations are derived for a pore containing oil, gas and oil film. The model results show that bubble breakup is more likely to happen in networks with high-pressure gradients. Also, increasing oil viscosity hinders bubble breakup." @default.
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- W2020274013 date "2007-08-01" @default.
- W2020274013 modified "2023-09-25" @default.
- W2020274013 title "Bubble Breakup in Porous Media" @default.
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- W2020274013 doi "https://doi.org/10.2118/07-08-02" @default.
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