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Two-fluid model for transient analysis of slug flow in oil wells
Authors:O. Cazarez-Candia,O.C. Bení  tez-CentenoG. Espinosa-Paredes
Affiliation:a Instituto Mexicano del Petróleo, Eje central Lázaro Cárdenas No. 152, Col. San Bartolo Atepehuacan, México D.F. 07730, Mexico
b Centro Nacional de Investigación y Desarrollo Tecnológico, Depto. de Mecánica, Interior Internado Palmira s/n, Col. Palmira, Cuernavaca, Morelos 62490, Mexico
c Area de Ingeniería en Recursos Energéticos, Universidad Autónoma Metropolitana-Iztapalapa, Av San Rafael Atlixco No 186, Col. Vicentina 55-534, México D.F. 09340, Mexico
d Instituto Tecnológico de Zacatepec, Depto. de Metal-Mecánica, Calzada Tecnológico, No. 27, Zacatepec, Morelos 62780, Mexico
Abstract:In this work it is presented a transient, one-dimensional, adiabatic model for slug flow simulation, which appears when liquid (mixture of oil and water) and gas flow simultaneously through pipes. The model is formed by space and time averaged conservation equations for mass, momentum and energy for each phase, the numerical solution is based on the finite difference technique in the implicit scheme. Velocity, pressure, volumetric fraction and temperature profiles for both phases were predicted for inclination angles from the horizontal to the vertical position (unified model) and ascendant flow. Predictions from the model were validated using field data and ten correlations commonly used in the oil industry. The effects of gas heating or cooling, due to compression and expansion processes, on the predictions and numerical stability, were studied. It was found that when these effects are taken into account, a good behavior of temperature predictions and numerical stability are obtained. The model presents deviations lower than 14% regarding field data and it presents better predictions than most of the correlations.
Keywords:Slug flow   Two-fluid model   Oil wells   Oil-water-gas   Stability analysis   Pressure drop   Numerical solution
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