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- W2028292032 abstract "Abstract This abstract presents a multi-disciplinary approach in identifying the reservoir characterization of an Upper Cretaceous fractured reservoir comprising variety of lithology, texture and facies. The field was discovered in 1965 and has been producing by natural depletion with a strong aquifer pressure support since 1983. All wells in the field are equipped with ESP. Generally, pressure support is from strong aquifer however, field experience immature water cut through fracture corridors and high permeability matrix in parts. The reservoir is extensively fractured with high degree of heterogeneity due to diagenesis. The fracture network interpretation was the result of integrating FMI/FMS image logs, cores and seismic data. The fractures occur in the form of corridors forming fracture zones/sub-seismic faults. The fracture strikes N40E and N70E with fracture length ranging from 500 to 1000m. The reservoir thickness ranges from some 300ft in the crest to 600ft in the flank. The reservoir porosity ranges from 3% to 40 % and the permeability ranges from 0.1mD to 16 D. Due to the reservoir heterogeneity, the dynamic data including Transient Pressure, Production Logging, and Multi-rate production tests indicated various well behaviors and performance which is linked to the reservoir properties. Some wells showed fracture dominated system and other wells showed production related to matrix behavior. In some instances fractures enhanced the well productivity while in others they cause sever water production and increased water cut. However, the high water cut in some wells was not only attributed to fractures, but also due to high matrix permeability. The results and outcome of the integrated work helped in understanding the reservoir behaviour leading to optimization of development plan. In order to control the immature field water cut, contingency plan including ICD is considered." @default.
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- W2028292032 date "2010-11-01" @default.
- W2028292032 modified "2023-09-26" @default.
- W2028292032 title "Integration of Geoscience and Reservoir Engineering Aspects in Understanding and Developing Highly Fractured Reservoir" @default.
- W2028292032 doi "https://doi.org/10.2118/138453-ms" @default.
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