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- W2000994622 abstract "Abstract Recent research into clear brine completion fluid induced formation damage, focused on the compatibility of completion brines with formation crude oils(1). Foxenberg, et al., demonstrated that when added to completion fluids, surfactants can provide benefits such as emulsion prevention, surface tension reduction, and aiding flow back of fluid that has leaked off into the formation. They reported on the emulsification tendencies of certain Gulf of Mexico crude oils and high density completion fluids, including calcium chloride, calcium bromide and zinc bromide based brines. Although their work demonstrated a method to eliminate formation damage caused by emulsion, it necessitated disposal of the treated completion fluid. Disposal of the a 12.5 ppg CaCl2-CaBr2 brine was necessary because the fluid supplier was unable to remove the high concentration of solvent/surfactant required to provide crude oil-completion fluid compatibility. This ability to reclaim and recycle a ‘used’ fluid is an essential requirement if these relatively high dollar completion fluids are to be economically utilized. This paper focuses on the development and application of surfactant based systems that eliminate formation damage caused by emulsification of crude oil and high density completion fluids. Laboratory procedures that ensure efficacy and penetration of the surfactant into the formation matrix are presented. A compatibility matrix of GOM crude oils and completion fluids is included. Field case histories are discussed, illustrating the benefits of specifically designed surfactant systems such as enhanced crude oil-completion fluid compatibility, ability to reclaim heavy brine by reducing the effective concentration of surfactant and diminished risk of environmental exposure by curtailing the amount of mutual solvent required to obtain fluid-fluid compatibility." @default.
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- W2000994622 date "1998-02-18" @default.
- W2000994622 modified "2023-10-18" @default.
- W2000994622 title "Eliminate Formation Damage Caused By High Density Completion Fluid - Crude Oil Emulsion" @default.
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- W2000994622 doi "https://doi.org/10.2118/39444-ms" @default.
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