Scaled down Design of a Cold and Hot Flow Model Based on a Bubbling Fluidized Bed Pilot Plant Gasifier

Author:

Eslami Afrooz Iman1,Sinnathambi Chandra Mohan2,Karuppanan Saravanan1,Ling Chuan Ching Dennis1

Affiliation:

1. Universiti Teknologi PETRONAS

2. UniversitiTeknologi PETRONAS

Abstract

Bubbling fluidized bed (BFB) is a vital equipment in many applications in the energy, pharmaceuticals, and chemicals process industries due to its numerous advantages such as large heat capacity inside a bed, and rapid heat and mass transfer rate. In spite of numerous research activities, achieving high fluidization performances in BFB process is still a challenge of science. This research is being conducted to study the hydrodynamic regime of a BFB pilot plant gasifier. To this end, a lab-scale cold model was first designed based on the empirical equations and scaling laws. The scaling laws was used to scale down the Tenaga Nasional Berhad-PETRONAS (TNBR-PETRONAS) pilot plant gasifier into a small scale laboratory model. Moreover, the empirical equations were utilized to determine the critical parameters such as bed pressure drop, height of the bed, number of orifices of the distributor plate and the pitch size. Finally a lab-scale hot flow model will be designed based on the cold model geometric dimensions but under a real operating conditions as that of a pilot plant.

Publisher

Trans Tech Publications, Ltd.

Reference13 articles.

1. P. Basu, Combustion and gasification in fluidized beds. Boca Raton: CRC/Taylor & Francis, (2006).

2. P. N. Rowe and B. A. Partridge, An X-ray study of bubbles in fluidized beds, Transactions of the Institution of Chemical Engineers. 43 (1965) T157-T175.

3. D. Clift, Hydrodynamics of bubbling fluidised beds, in Gas fluidisation technology, D. Geldart, Ed., ed New York: Wiley, 1986, pp.53-96.

4. L. R. Glicksman, M. R. Hyre, and P. A. Farrell, Dynamic similarity in fluidization, International Journal of Multiphase Flow. 20, Supplement 1 (1994) 331-386.

5. P. S. B. Stewart and J. F. Davidson, Slug flow in fluidised beds, Powder Technology. 1 (1967) 61-80.

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