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IMPROVED/ENHANCED OIL
RECOVERY
Abstract
This work discusses improved/enhanced oil recovery.This project
presents a comprehensive review of the technical progress as well as updated
knowledge and understandings of IOR/EOR technologies for tight oil reservoirs.
Critical and in-depth assessment of various IOR/EOR methods is made upon the
best practice and lessons learned, mainly, in the North America. In the past
few years, many traditional and new IOR/EOR methods have been tested in
laboratory and piloted in field to investigate their potential in improving oil
recovery from unconventional plays, including water injection, miscible and
immiscible gas injection, water-alternating-gas injection, chemical flooding,
and nanotechnology. Feasibility concerns and technical challenges, such as low
injectivity, formation damage, and low sweep efficiency arising from extremely
low permeability and high heterogeneity in fractured tight oil reservoirs, are
raised for directly adopting traditional IOR/EOR methods. IOR/EOR mechanisms in
tight oil reservoirs mainly involve gas and oil flows in nanometer pores, gas
dissolution and diffusion through low permeability matrix, oil swelling,
wettability alteration, IFT reduction, and fracture-matrix interaction, thus
thorough understanding of flow and transport mechanisms in multi-scale pores
and fractures is indispensable for developing effective IOR/EOR technologies.
To optimize the selection of specific gas species or chemical formulas, it is
necessary to conduct preliminary assessment of practicability and viability
with both experimental studies and numerical simulations for operation
upscaling and production prediction before field implementation.
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