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- W2073524531 abstract "Abstract The high gas price environment of late 2000 led to a decision to shut-in all steam injection at the McKittrick field of Aera Energy LLC. When steam injection resumed in early 2001, a decision was made to plug-back all Lower Sands injection and to move uphole as prescribed in the original depletion plan. In order to better understand the impact on reservoir performance, operational issues, and productivity improvements, a new reservoir simulation model was developed in 2003. Thermal simulation was based on a detailed 3D geological model, which allowed for modeling of complex fluid flow during the steam flooding process with comingled production from the various sands. A 3-D McKittrick geological model showed that intervening shale intervals had holes (chimneys) from which steam could have migrated into the Upper Sands from the Lower Sands injection. Simulation results confirmed that steam injected into the Lower Sands had indeed migrated into the Upper Sands through the shale chimneys. Based on our view of the ultimate field recovery, the Lower Sands were less mature than expected at the time of the uphole expansion. A field-wide study based on temperature observation well logging confirmed an areal distribution of remaining hot oil. Simulation sensitivity runs were made to understand the feasibility of returning injection to the Lower Sands within the model area. Draining the Lower Sands through use of horizontal wells was also studied. This paper focuses on the reservoir modeling process and the interpretation of simulation results for understanding reservoir performance." @default.
- W2073524531 created "2016-06-24" @default.
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- W2073524531 date "2005-03-30" @default.
- W2073524531 modified "2023-09-25" @default.
- W2073524531 title "A New Reservoir Simulation Model for Understanding Reservoir Performance in the McKittrick Steam Drive" @default.
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- W2073524531 doi "https://doi.org/10.2118/93894-ms" @default.
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