Stratified turbulent-turbulent gas-liquid flow in horizontal and inclined pipes
β Scribed by Ovadia Shoham; Yehuda Taitel
- Publisher
- American Institute of Chemical Engineers
- Year
- 1984
- Tongue
- English
- Weight
- 778 KB
- Volume
- 30
- Category
- Article
- ISSN
- 0001-1541
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β¦ Synopsis
A two-dimensional model for stratified turbulent-turbulent gas-liquid flow in inclined pipes is proposed. The gas phase is treated as bulk flow, but an exact solution is carried out for the liquid phase, applying the eddy viscosity theory to model the turbulent viscosity. The interfacial structure is taken into consideration using appropriate correlations for the interfacial shear stress. The model is capable of predicting the liquid velocity field, holdup and pressure drop given gas and liquid flow rates, physical properties, pipe size, and angle of inclination. The results are substantially better than the prediction of Lockhart and Martinelli (1949) correlation and better than the Taitel and Dukler (1976) model for stratified flow.
π SIMILAR VOLUMES
This paper reports on an experimental study of the direct contact heat transfer between oil and water in turbulent pipe flow under nonboiling conditions. Data were taken by a new technique, namely, monitoring on a very fast response recorder the output of a small thermacouple placed in the two-phase