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Pressure Drop Determination for Multiphase Flow in a Vertical Well Tubing
Author(s) -
Sarah Abidemi Akintola
Publication year - 2021
Language(s) - English
DOI - 10.53902/tpe.2021.01.000510
Subject(s) - pressure drop , multiphase flow , mechanics , computation , drop (telecommunication) , flow (mathematics) , petroleum engineering , fluid dynamics , flow coefficient , geology , mathematics , engineering , physics , mechanical engineering , algorithm
Several studies have been carried out, by researchers to predict multiphase flow pressure drop in the oil and gas industry, but yet there seems to be one being generally acceptable for accurate prediction of pressure drop. This is as a result of some constraints in each of these models, which makes the pressure drop predicted by the model far from accurate when compared to measured data from the field. This study is aimed at developing a multiphase fluid flow model in a vertical tubing using the Duns and Ros flow model. Data from six wells were utilized in this study and results obtained from the Modified model compared with that of Duns and Ros model along other models. From the result, it was observed that the newly developed model (Modified Duns and Ros Model) gives more accurate result with a R-squared value of 0.9936 over the other models. The Modified model however, is limited by the choice of correlations used in the computation of fluid properties.

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