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Simulation of a turbulent annulus with interfacial waves in core-annular pipe flow

Haoyu Li, M.J.B.M. Pourquié, G. Ooms, R.A.W.M. Henkes

2022International Journal of Multiphase Flow13 citationsDOIOpen Access PDF

Abstract

Interfacial waves in core-annular pipe flow are studied through two-phase numerical simulations. Here the water annulus is turbulent, whereas the oil core stays laminar. The low-Reynolds number Launder & Sharma k−ε model is applied. By extracting the moving wave shape from the two-phase results and imposing this as a solid boundary in a single-phase simulation for the water annulus gives single-phase results (for the pressure drop and holdup ratio) that are in close agreement with values obtained from the two-phase approach. The influence of wave amplitude and wave length on the pressure drop and hold up ratio is then studied by using the single-phase flow model. This gives insight in the appearance of core-annular flow, where the water-based Fanning wall-friction factor and the hold-up ratio are selected as the most important quantities. The effect of watercut and eccentricity on these quantities is also investigated.

Topics & Concepts

Annulus (botany)MechanicsLaminar flowPressure dropTurbulenceReynolds numberEccentricity (behavior)Materials scienceTwo-phase flowFlow (mathematics)Phase (matter)PhysicsComposite materialLawQuantum mechanicsPolitical scienceFluid Dynamics and MixingPetroleum Processing and AnalysisFluid Dynamics and Thin Films
Simulation of a turbulent annulus with interfacial waves in core-annular pipe flow | Litcius