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- W2024183025 abstract "Abstract As time lapse seismic data are frequently available to guide the understanding of fluid flow behavior, a methodology has been developed to produce a fine scale geological model constrained by time dependent data, wells and 4D in a quantitative way. This enables us to keep the coarse model used in fluid flow simulations consistent with the fine scale geological model [1]. The objectives of this work are to validate the proposed methodology on a realistic synthetic case and to assess the impact of 4D in prediction improvements. Are we doing a better job by using 4D in history matching? A synthetic reference case was derived from a Gaz de France gas storage site where gas injection and production are alternated over a 20-year period. Seven geological units showing various degrees of heterogeneities describe this full field dynamic model. A fine scale reference geological model was built (9.7 million cells), then upscaled and used in flow simulator. This model honored the observed static and dynamic well data (17 wells). Saturation maps from fluid flow simulation and a petro elastic model (PEM) were used to derive acoustic and elastic parameters. This reference data set will provide a point of comparison to assess and quantify the prediction performances as the time period is divided into history and prediction. A workflow was developed to build a consistent fine scale geological model, a fluid flow model and seismic data using a PEM and accounting for the various scales. The forward modeling part of the workflow was used to compute simulated well data, impedances Ip, Is and time shift data. Then using an optimization loop, the models were constrained to observed well data and time lapse seismic data. The case study validates the methodology and shows an efficient way to include quantitatively 4D information while keeping consistency through the modeling chain. The model constrained by well data and 4D seismic data lead to more accurate predictions than the model constrained by well data only." @default.
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- W2024183025 date "2005-10-09" @default.
- W2024183025 modified "2023-10-16" @default.
- W2024183025 title "4D Monitoring of an Underground Gas Storage Case Using an Integrated History Matching Technique" @default.
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- W2024183025 doi "https://doi.org/10.2118/95838-ms" @default.
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