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The AAPG/Datapages Combined Publications Database

Indonesian Petroleum Association

Abstract


28th Annual Convention Proceedings (Volume 2), 2002
Pages 259-269

A Previous HitRecoveryNext Hit Factor Correlation for a Bottom Water Previous HitDriveNext Hit Gas Reservoir

Dwi Pujiastuti, Tutuka Ariadji

Abstract

One of the most important parameters in estimating Previous HitrecoveryNext Hit factor for a water Previous HitdriveNext Hit gas reservoir is residual gas saturation. However, very limited references have examined this topic.

The objective of this paper is to find a correlation between residual gas saturation and Previous HitrecoveryNext Hit factor of a gas reservoir under bottom water-Previous HitdriveNext Hit using a finite difference simulator. The reservoir model used in this study is a 2-D radial, 2-phase water-gas flow. The generated model was validated with a published analytical method for cumulative water influx and initial gas in place calculation.

A sensitivity analysis was then conducted by applying several different values of residual gas saturation to the reservoir model input. The values of the residual gas saturation vary between 0.28 and 0.38. The simulations were run until specified Previous HitrecoveryNext Hit factors corresponding to certain reservoir abandonment pressures. Performance of the reservoir pressure with respect to cumulative production was plotted for difference values of residual gas saturation. Hence, the resultant reservoir abandonment pressures can be correlated with the residual gas saturation data and Previous HitrecoveryNext Hit factors.

The correlation obtained is visually presented in a chart of residual gas saturation versus abandonment pressure for different values of Previous HitrecoveryNext Hit factor. The result also shows that the Previous HitrecoveryTop factors decrease when the residual gas saturation increases for a certain reservoir abandonment pressure. The relationship is not linear, and validates as well as broadens the very limited available literatures.


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