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- W2013481619 abstract "Abstract The succession-of-pseudosteady-states approach, originally established for linear diffusion problems, has been extended to calculate the long-time behavior of real gas flow in a closed reservoir. The applicability and limitations of the approach were examined through a series of numerical simulation works and error analysis. It is intent of this paper to provide a quantitative guideline on the use of pseudosteady-state approach to real gas flow problems. To extend the pseudosteady-state approach, a linearized form of gas diffusivity equation was derived by introducing normalized pseudovariables to the equation. Extensive numerical simulation study has then been performed to quantify effects of various reservoir and operational parameters which may develop nonlinearities in the gas flow problems. The parameters considered are permeability, pressure, flowrate, and gas properties. Results of simulation studies have been examined with cumulative error analysis. For most cases, a fairly good agreement was observed between the predictions from the pseudosteady-states model and conventional reservoir simulation. Error analysis demonstrates that the permeability and reservoir pressure can affect the results of a succession-of-pseudosteady-states approach. The accuracy depends weakly on the flowrate, and is almost independent of specific gravity. Except for the cases of very low permeabilities, however, computations indicate that neglecting infinite-acting flow behavior does not introduce serious error in the procedure. The validity and computational efficiency of the succession-of pseudosteady-states approach for the analysis of gas reservoirs has been confirmed in the present work." @default.
- W2013481619 created "2016-06-24" @default.
- W2013481619 creator A5061170307 @default.
- W2013481619 date "2002-10-08" @default.
- W2013481619 modified "2023-09-28" @default.
- W2013481619 title "Effects of Reservoir and Operational Parameters on the Succession-of-Pseudosteady-States Modeling of a Closed Gas Reservoir" @default.
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- W2013481619 doi "https://doi.org/10.2118/77863-ms" @default.
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