Dispersed oil–water–gas flow through a horizontal pipe

Дисперсный поток масла–воды–газа в горизонтальной трубе
R.V.A. Oliemans, Jerry Westerweel, K. Piela, R. Delfos, G. Ooms
2009-03-23

bubble and drop volume fractionhorizontal pipe flowphase inversionpressure dropthree-phase dispersed flow
Abstract An experimental study of three‐phase dispersed flow in a horizontal pipe has been carried out. The pressure drop over the pipe strongly increases with increasing bubble and drop volume fraction. Because of the presence of drops the transition from dispersed bubble flow to elongated bubble flow occurs at a lower gas volume fraction. The gas bubbles have no significant influence on the phase inversion process. However, phase inversion has a strong effect on the gas bubbles. Just before inversion large bubbles are present and the flow pattern is elongated bubble flow. During the inversion process the bubbles break‐up quickly and as the dispersed drop volume fraction after inversion is much lower than before inversion, a dispersed bubble flow is present after inversion. (When inversion is postponed to high dispersed phase fractions, the volume fraction of the dispersed phase can be as high as 0.9 before inversion and as low as 0.1 after inversion.) © 2009 American Institute of Chemical Engineers AIChE J, 2009
1
Gas bubbles do not significantly influence the phase inversion process between dispersed phases.
2
Phase inversion strongly affects gas bubbles: just before inversion large/elongated bubbles dominate, but during inversion bubbles break up quickly.
3
Presence of liquid drops shifts transition from dispersed bubble flow to elongated bubble flow to lower gas volume fraction.
4
Pressure drop in horizontal three-phase dispersed flow strongly increases with increasing bubble and drop volume fraction.
5
When inversion is delayed to high dispersed-phase fractions, dispersed-phase volume fraction can be ~0.9 before inversion and ~0.1 after inversion.

Three-phase dispersed oil–water–gas flow in a horizontal pipe

Effects of dispersed bubble and drop volume fractions and phase inversion on pressure drop and flow-pattern transitions (dispersed bubble to elongated bubble flow), including bubble breakup dynamics during inversion

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2009-03-23
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Authors
R.V.A. Oliemans
Jerry Westerweel
K. Piela
R. Delfos
G. Ooms
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