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A three-dimensional model of turbulent core annular flow regime - MaRDI portal

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A three-dimensional model of turbulent core annular flow regime (Q2051654)

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scientific article; zbMATH DE number 7433071
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English
A three-dimensional model of turbulent core annular flow regime
scientific article; zbMATH DE number 7433071

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    A three-dimensional model of turbulent core annular flow regime (English)
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    24 November 2021
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    Summary: In this study, three-dimensional (3D) turbulent core annular flow (CAF) regime is investigated numerically. The proposed model is based on the 3D Reynolds average Navier-Stokes (RANS) equations combined with a pure convective transport equation of the volume of fluid (VOF) to predict the interface between the oil and water phases. The k-\(\omega\) turbulence model is adopted to better reproduce the oil and water flow characteristics. The two-phase (CAF) regime can be predicted by two inlet configurations: the T-junction (3D-T) and the straight pipe (3D-S). These two configurations are simulated and compared for pipe diameter \(D=0.026\) m and pipe length \(L=4\) m. For these two inlet configurations, the computed mixture velocity profile and the water volume fraction at a test section (\(z = 100\) D) were compared to experimental measurements. The 3D-T configuration gives more appropriate results. The 3D-S slightly overestimates the maximum velocity at the test section and the lower and upper water layer of the (CAF) flow is shifted in the upward direction. For the 3D-T, the relative error in the pressure drop is 3.3\%. However, for the 3D-S, this error is 13.0\%.
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