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A Critical Review of Enhanced Oil Recovery by Imbibition: Theory and Practice

Journal

ENERGY & FUELS
Volume 35, Issue 7, Pages 5643-5670

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.energyfuels.1c00199

Keywords

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Funding

  1. Beijing Natural Science Foundation of China [2184120]
  2. Science Foundation of China University of Petroleum, Beijing [2462018YJRC033]
  3. Natural Sciences and Engineering Research Council of Canada (NSERC)/Energi Simulation and Alberta Innovates Chairs
  4. Energi Simulation/Frank and Sarah Meyer Collaboration Centre
  5. University of Calgary-Beijing Research Site

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Imbibition plays a crucial role in enhanced oil recovery, benefiting reservoirs like fractured ones, conventionally developed by water-injection, and unconventional ones with abundant micro-nanopores. Understanding the mechanisms and governing factors of EOR by imbibition can contribute to better exploitation of oil and gas resources.
Imbibition is very common, occurring in life, material, chemistry, and energy. It plays an important role in enhanced oil recovery (EOR). The development of many reservoirs is beneficial to the imbibition process, such as fractured reservoirs, conventional reservoirs developed by a water-injection mode of huff-n-puff in their later development, and unconventional reservoirs with abundant micro-nanopores developed by the fracturing technology. Here, we present a critical review of EOR through imbibition. First, the mechanisms of EOR through imbibition are reviewed, including the mechanical analysis of imbibition in a capillary, imbibition models for rocks, and the scaling law. Then, the governing factors of EOR by imbibition are summarized, including the properties of rocks and fluids and the effects of the temperature and pressure. Besides, the EOR by imbibition in the oil and gas development is discussed, including the roles of surfactants, nanofluids, salinity, shut-in time, and injection/production rates. Finally, conclusions and outlooks are presented. This review provides systematic and recent insights about EOR by imbibition and a direction for future research on this topic, which can help for a better understanding of EOR by imbibition.

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