COMMINGLED PRODUCTION FROM STACKED RESERVOIR

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COMMINGLED PRODUCTION FROM STACKED RESERVOIR

In recent years, the optimization of hydrocarbon production has increasingly focused on the technique of commingling production from stacked reservoirs. Commingled production involves the extraction of hydrocarbons from multiple distinct zones by utilizing a single tubing string (Ferrer, 1998). This approach has been implemented using advanced software tools, such as CMG Builder and IMEX. The objective of this study was to investigate the effects of pressure, permeability, viscosity, and thickness of each individual zone on the commingled production process and to develop a comprehensive flow model within the wellbore.

To achieve this goal, a thorough analysis of various parameters was conducted. Pressure levels within the reservoirs were measured and recorded, while the permeability, viscosity, and thickness of each zone were carefully studied. The collected data were then integrated and analyzed to construct a wellbore flow model using the CMG Builder and IMEX software.

The results obtained from the analysis revealed significant insights into the commingled production process. The investigation of pressure, permeability, viscosity, and zone thickness provided valuable information on their respective influences on the overall flow rate. By collating and interpreting these results, it was possible to draw conclusions regarding the factors that have the most significant impact on the flow rate during commingled production.

In conclusion, the utilization of commingled production techniques in optimizing hydrocarbon production from stacked reservoirs has demonstrated promising results. The findings of this study, obtained through the use of CMG Builder and IMEX software, highlight the importance of considering parameters such as pressure, permeability, viscosity, and zone thickness when developing a flow model for the wellbore. Understanding the relationships between these factors and the resulting flow rate is crucial for effectively implementing commingled production strategies and enhancing hydrocarbon recovery from multiple reservoir zones.

COMMINGLED PRODUCTION FROM STACKED RESERVOIR. GET MORE OIL AND GAS/PETROLEUM ENGINEERING PROJECT TOPICS AND MATERIALS

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