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- W2123479410 abstract "Abstract Production of the viscous heavy oil from the shallow Rubble reservoir (about 1500-1600’) in the Bahrain field has been a challenge given its low gravity (12-18° API) and high viscosity (350 cps at 40° C). It was planned to carry out a trial test of thermally stimulating the formation to improve the production rates from this reservoir using a downhole heater. Since the greatest pressure drop in a producing well is always near the well bore application of heat at the well bore to reduce the oil viscosity can result in dramatic increases in oil production. The trial test showed an increase in oil production from < 10 bopd to about 70 bopd initially and later stabilized at about 40 bopd. Even a modest increase in downhole temperature was seen to have a significant effect on both the water cuts and production rates. Of the various types of downhole heaters available it was chosen to install an induction type of heater in view of the various inherent advantages. Primarily, these heaters could be installed in wells with no special completion requirements. The Inductor tool assembly utilizes the electrical energy to inductively heat the reservoir through the Ferro-magnetic casing. Efficient three-phase power delivery through an ESP cable using high voltage and low current minimizes resistive power losses and as much as 80-85% of the delivered power can be converted into heat. The paper deals with the trial installation, operation problems encountered and the production performance of the well on trial. Based on the success of the pilot additional installations are being planned for trials in two more wells with heavier and more viscous oil quality." @default.
- W2123479410 created "2016-06-24" @default.
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- W2123479410 date "2001-03-17" @default.
- W2123479410 modified "2023-10-16" @default.
- W2123479410 title "Field Pilot Test of Thermal Stimulation of Rubble Reservoir Using Down Hole Induction Heaters" @default.
- W2123479410 cites W1978834737 @default.
- W2123479410 doi "https://doi.org/10.2118/68220-ms" @default.
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