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- W2807181736 abstract "Abstract The main objectives of this chapter are as follows: (1) to review the laboratory experiments and field cases providing proof of concept for the effectiveness of nanoparticles utilization to control fines migration; (2) to develop mathematical foundations to evaluate the success of nanoparticles to control fines migration in both linear and radial flow system; (3) to compare the performance of two different approaches of nanoparticles utilization (coinjection and pretreatment) to control fines migration; (4) to evaluate nanofluid utilization to reduce fines migration in porous media saturated with two immiscible fluids; and (5) to investigate the feasibility of combining nanofluids with low-salinity waterflooding to improve production performance. To accomplish the abovementioned objectives, the following topics are evaluated: (1) nanoparticles adsorption, detachment, and straining behaviors and their effects on permeability damage are quantified using both mathematical models and experimental works; (2) the positive contributions of nanoparticles to mitigate fines migration are characterized by the enhancement of maximum retention concentration of fine particles onto rock grains through defining the mutual reactions among nanoparticles, fines, and rock grains; (3) theoretical evaluation is summarized for the effectiveness of nanoparticles to mitigate fines migration in single-phase water and two-phase oil and water flow using different approaches of nanoparticles utilization to control fines migration: coinjection of nanoparticles with fines suspension, and precoating of porous medium with nanoparticles prior to fines injection; (4) an axisymmetric radial flow is introduced to evaluate the mobility-control improvement associated with fines migration, and optimize the nanofluid treatment radius for the purpose of improving the performance of low-salinity waterflooding." @default.
- W2807181736 created "2018-06-13" @default.
- W2807181736 creator A5041249407 @default.
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- W2807181736 date "2018-01-01" @default.
- W2807181736 modified "2023-09-26" @default.
- W2807181736 title "Using Nanofluids to Control Fines Migration in Porous Systems" @default.
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- W2807181736 doi "https://doi.org/10.1016/b978-0-12-813782-6.00004-x" @default.
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