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- W2000912905 abstract "Abstract Reservoir simulation models based on detailed outcrop description provide a means to evaluate the importance of various types of heterogeneity on reservoir performance. This study models tracer flow in a multistoried fluvial sequence, the Pennsylvanian Gypsy sandstone. To better understand the effects of heterogeneity on a subsurface fluvial reservoir, three-dimensional reservoir simulation models were constructed incorporating information from correlative rocks which outcrop fifteen miles from the subsurface site. The heterogeneity considered in this study is the higher-order architecture of the Gypsy i.e. its channel sandbody configuration. At the five acre subsurface site, six wells penetrate the Gypsy from 890 ft to 1000 ft measured depth and encounter a depositionally similar fluvial sequence as at outcrop. The wells comprise an inverted five spot with one observation well. Within this site, Gypsy net sandstone varies from 27 ft to 60 ft. Cores indicate that the number of channel sandbodies varies from three to as many as six. Gypsy channel sandbodies can be subdivided into three intervals primarily on correlation of laterally continuous mudstone and siltstone bodies. Within these intervals, correlation of individual channel sandbodies is uncertain. Due to uncertainty in channel sandbody distribution, the general approach is to develop multiple reservoir models. Each of these models honors well data but differ in configuration of channel sandbody orientation. However, for each, interpretation of channel sandbody configuration is constrained by information on channel patterns from the outcrop and by local net sandstone trends surrounding the subsurface site." @default.
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- W2000912905 date "1991-10-06" @default.
- W2000912905 modified "2023-10-18" @default.
- W2000912905 title "Modeling Reservoir Heterogeneity in a Fluvial Sandstone: The Gypsy Sandstone of Oklahoma" @default.
- W2000912905 doi "https://doi.org/10.2118/22742-ms" @default.
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