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- W2028939906 abstract "Summary Optimal planning, design, and operation of gas fields in production or storage critically depends on reliable models for predicting pressures that are often based on sophisticated numerical and mathematical concepts. The pressure that prevails at a given time is a direct function of production/injection schedules, past history, and surface equipment as related to reserves and reservoir characteristics. Maintaining the pressure within prescribed limits is particularly important in underground storage to avoid pressures above a maximum for reasons of safety and migration and below a minimum for surface-equipment and contracted-deliverability considerations. This paper presents a new way to calculate the convolution integral on which the pressure variations depend. The classic methods were long and costly to run and seldom used. Our method, which identifies this convolution integral with a finite sum of exponential terms, is much quicker and has been implemented in a program called PREPRE, usable on microcomputers. Based on a production/pressure schedule, the model is capable of forecasting the evolution of pressures in main zones of interest, such as wellbores, gathering systems, and surface equipment. The data required for the model—past production/pressure history—are matched by a special algorithm that automatically calculates the main reservoir parameters used as bases for future projections. The quick and easy-to-run program is now in use at all engineering levels at Gaz de France." @default.
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- W2028939906 date "1990-11-01" @default.
- W2028939906 modified "2023-09-26" @default.
- W2028939906 title "Practical Model for Predicting Pressure in Gas-Storage Reservoirs" @default.
- W2028939906 doi "https://doi.org/10.2118/16947-pa" @default.
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