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- W2090940740 abstract "Abstract The GRI/DOE M-Site Project involved a series of seventeen test injections pumped into three separate wet, non-economic sandstone reservoirs. Various advanced diagnostic techniques were used to characterize the resultant fracture systems. These diagnostics included microseismic-event mapping, the use of closely-located downhole tiltmeters, and numerous observations resultant from cores taken through the expected fracture azimuth. Using numerous procedures and tests, these reservoirs were more completely characterized than would be the case for a typical commercial reservoir, however the accuracy of some important parameters (specifically, some which are used as fracture simulator inputs) is still questionable due to the layered nature of the reservoirs. All seventeen of the injections were analyzed using a lumped-parameter 3D fracture simulator, both in real-time and postinjection. Using measured injection data as inputs, the simulator-predicted pressure was compared and matched to the measured data. Whenever the model-predicted fracture dimensions differed substantially from the diagnostically-determined dimensions, certain model and/or reservoir parameters were changed so that the simulator and diagnostic dimensions predictions were in agreement (with simulated and measured pressure also still in agreement). Details of the simulator analyses are presented and compared to the diagnostic interpretations. Other direct observations made from the various data are also presented." @default.
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- W2090940740 date "1997-10-05" @default.
- W2090940740 modified "2023-09-23" @default.
- W2090940740 title "A Systematic Study of Fracture Modeling and Mechanics Based on Data from the GRI/DOE M-Site Project" @default.
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- W2090940740 doi "https://doi.org/10.2118/38576-ms" @default.
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