Flow Pattern Transition During Gas Liquid Upflow Through Vertical Concentric Annuli—Part II: Mechanistic Models

Author:

Das G.1,Das P. K.2,Purohit N. K.1,Mitra A. K.1

Affiliation:

1. Department of Chemical Engineering, Indian Institute of Technology, Kharagpur - 721 302, India

2. Department of Mechanical Engineering, Indian Institute of Technology, Kharagpur - 721 302, India

Abstract

In this paper the transition boundaries between different flow regimes during cocurrent upflow of gas liquid two-phase mixture through concentric annuli has been predicted theoretically. On the basis of the experimental observations (Das et al., 1999), mechanistic models have been proposed to formulate mathematical equations of the regime boundaries as functions of the annulus dimensions, the physical properties, and velocities of the two phases. The analysis has yielded the bubbly-slug transition to occur at a limiting void fraction of 0.2, and the slug-churn transition to occur due to flooding of the liquid films by the Taylor bubbles. A comparison of the model predictions with experimental data corroborate the suitability of the proposed mechanisms.

Publisher

ASME International

Subject

Mechanical Engineering

Reference21 articles.

1. Billicki Z. , and KestinJ., 1987, “Transition Criteria for Two Phase Flow Patterns in Vertical Upward Flow,” International Journal of Multiphase Flow, Vol. 13, pp. 283–294.

2. Brotz W. , 1954, “Uber die Vorausberechnung der Absorptionsges chwindigkeet von Gasen in Stromenden Flussigkeitsschichten,” Chemical Engineering Technik, Vol. 26, p. 470470.

3. Caetano, E. F., Shoham, O., and Brill, J. P., 1989a, “Upward Vertical Two Phase Flow through an Annulus—Part I: Single Phase Friction Factor, Taylor Bubble Rise Velocity and Flow Pattern Prediction,” Multiphase Flow—Proceedings of 4th International Conference, pp. 301–330, BHRA, Cranfield, England.

4. Das, G., 1995, “Some Hydrodynamic Aspects of Two Phase Gas-Liquid Upflow through Concentric Annulus,” Ph.D. thesis, Department of Chemical Engineering, Indian Institute of Technology, Kharagpur, India, pp. 138–245.

5. Das G. , DasP. K., PurohitN. K., and MitraA. K., 1998, “Rise of Taylor Bubbles Through Concentric Annuli,” Chemical Engineering Science, Vol. 53, No. 5, pp. 977–995.

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