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- W2000423219 abstract "Abstract This paper builds on the results of previous work related to determining the drive mechanisms of the Mene Grande field. Various studies have been performed recently which all have indicated that the dominant water production mechanisms is depletion of the reservoir mustones or shales. This revelation has allowed both old and new data to be viewed in a new context which has led to a greater understanding of the reservoir bahviour. Both the long term, data and recent transient analysis strongly indicate the presence of dynamic system behaving as two separate systems. These two systems can roughly be classified as oil filled sandstone, and water filled mudstone. The permeability and volumetric differences are sufficient to induce a typical layered reservoir response. The field data and supporting studies for this drive mechanism have been reported previously. In this paper we describe the reservoir simulation methodology adopted in order to best represent this heterogeneus system. A dual permeability model has been used with the mudstone acting as the matrix and the sandstone as the fracture. The matrix-fracture transfer function acts as a very efficient history match parameter both for pressure and water cut. The results of both conceptual and well by well history matches are presented confirming that the methodology is well suited for modeling such systems. The quality of the water cut match even during the early stages of the work is quite remarkable. This paper will be focused mainly toward the dynamic model, since the geological model was explained in a previous work (See reference 1 for further details)." @default.
- W2000423219 created "2016-06-24" @default.
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- W2000423219 date "2004-09-26" @default.
- W2000423219 modified "2023-09-26" @default.
- W2000423219 title "Dual Permeability Approach to Modeling Fluvial Reservoirs in the Costa Bolivar Region of Venezuela" @default.
- W2000423219 doi "https://doi.org/10.2118/90927-ms" @default.
- W2000423219 hasPublicationYear "2004" @default.
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