Bubble drift velocity from the bed collapse technique in three-phase fluidized beds

Author:

Park Sung Soo,Kang Seok Min,Lee Dong Hyun,Lee Young Kwan,Kim Ji-Heung,Han Gui Young,Epstein Norman,Grace John R.,Kim Sang Done

Publisher

Springer Science and Business Media LLC

Subject

General Chemical Engineering,General Chemistry

Reference19 articles.

1. Begovich, J. M. and Watson, J. S.,Hydrodynamic Characteristics of Three-Phase Fluidized Beds, Fluidization, Davidson, J. F. and Keairns, D. L. eds, Cambridge University Press, Cambridge, U. K., 190 (1978).

2. Bhatia, V.K. and Epstein, N.,Three-Phase Fluidization: A Generalized Wake Model, Fluidization and Its Applications, Cepadeus-Editions, Toulouse (France), 380 (1974).

3. Chen, Y. M. and Fan, L. S., “Drift Flux in Gas-Liquid-Solid Fluidized Systems from the Dynamics of Bed Collapse,”Chem. Eng. Sci.,45, 935 (1990).

4. Chern, S.-H., Fan, L.-S. and Muroyama, K., “Hydrodynamic of Cocurrent Gas-Liquid-Solid Semifluidization with Liquid as the Continuous Phase,”AIChE J.,30, 288 (1984).

5. El-Temtamy, S. A. and Epstein, N., “Rise Velocities of Large Single Two-Dimensional and Three-Dimensional Gas Bubbles in Liquids and in Liquid-Fluidized Beds,”Chem. Eng. J.,19, 153 (1980).

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