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- W2055589177 abstract "Abstract The industry’s approach on SAGD injector well completion design is evolving in complexity by increasing the amount of steam-outflow distribution points along the horizontal wellbore. The main drivers in this evolution process are improved steam conformance and uniform chamber growth. Despite this trend, there are not many technical papers covering the criteria for selecting steam outflow locations, quantity and steam flow rate ratio at each distribution point. This paper describes a case study of a SAGD injector well completion design comprised of two parallel strings and multiple outflow control devices placed along the well’s long string. We modeled the steam outflow profile into the reservoir with a commercial thermal wellbore simulator, which is coupled to a series of reservoir cells along the horizontal wellbore. We based the preliminary completion design on the subsurface parameters that control steam flow into the reservoir (i.e. permeability, thickness, bitumen saturation, etc.). We derived these parameters from an up-to-date geological model based on core data, open-hole logs and cuttings analysis. At the end of the well’s circulation phase, we ran a series of temperature falloff logs from planned shut-in periods. We used fiber optic and thermocouple temperature data sets to perform thermal transient analysis, which allowed identifying the location of local/preliminary steam chambers and fingering phenomena. This diagnostic analysis generated a revision on the well’s preliminary completion design and steam outflow reservoir parameters. We carried out a final design using real SAGD performance data obtained from thermal transient analysis. The design objective was to negate the uncharacteristic steam chamber growth features, developed during the circulation phase, to promote uniform development along the wellbore. This paper provides a methodology and criteria for SAGD injector completion design that can be broadly applied across the industry, integrating wellbore hydraulics, reservoir properties and thermal transient analysis into the design process." @default.
- W2055589177 created "2016-06-24" @default.
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- W2055589177 date "2012-03-21" @default.
- W2055589177 modified "2023-09-24" @default.
- W2055589177 title "Integrating Wellbore Hydraulics, Reservoir Properties, and Thermal Transient Analysis for SAGD Injector Well Completion Design with Multiple Outflow Control Devices: A Case Study" @default.
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- W2055589177 doi "https://doi.org/10.2118/153909-ms" @default.
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