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- W2022457260 abstract "Abstract This paper presents the development of a correlation that corrects for error in horizontal well productivity calculations made by neglecting frictional pressure drop in the wellbore. Frictional pressure drop within the wellbore is frequently a controlling factor on the performance of long horizontal wells. Frictional pressure drop could be especially significant in wells completed with screens and slotted liners. This pressure loss is neglected in traditional inflow performance (IPR) calculations such as those developed by Joshi, and by Babu and Odeh. This study develops a correction that can be added to these analytical IPR relationships to account for friction. This correction is based on a dimensionless group that combines well and reservoir information. It is easy to evaluate and can be readily used in nodal analysis. The correction was developed on the basis of over 5,000 finite-difference simulation runs using a simulator with the capability to model wellbore friction. These runs spanned a wide range of well and reservoir parameters. The results are presented in terms of productivity error i.e. the flowrate without friction minus the flowrate when friction is included in the model, divided by the flowrate reported without friction. The study found productivity errors as high as 90% in some cases (usually long wells with small wellbore radius). These errors could lead to poor decisions on field development and production facilities. This paper presents a simple way to improve well productivity predictions without requiring a reservoir simulation model to take account of frictional pressure drops in the wellbore." @default.
- W2022457260 created "2016-06-24" @default.
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- W2022457260 date "2003-09-09" @default.
- W2022457260 modified "2023-10-05" @default.
- W2022457260 title "Correcting for Frictional Pressure Drop in Horizontal Well Inflow Performance Relationships" @default.
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- W2022457260 doi "https://doi.org/10.2118/80528-ms" @default.
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