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Dynamics of Gas-Solid Fluidization of Regular Particles in Conical Vessels

Kishore Chandra Biswal, B B Samal, G K Roy

Open publisher page 8 citations

Abstract

The relative merits of conical vessels over conventional cylindrical ones have been highlighted in this paper. The necessity of a generalized correlation for prediction of fluctuation ratio in case of gassolid fluidization in conical beds has been emphasized. Data on fluidization for glass bead-air system with varying cone angles have been presented. A correlation in terms of system parameters has been developed for prediction of the fluctuation ratio and its calculated and experimental values compared.

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What this paper is about

The relative merits of conical vessels over conventional cylindrical ones have been highlighted in this paper. The necessity of a generalized correlation for prediction of fluctuation ratio in case of gassolid fluidization in conical beds has been emphasized. Data on fluidization for glass bead-air system with varying cone angles have been presented. A correlation in terms of system parameters has been developed for prediction of the fluctuation ratio and its calculated and experimental values compared.

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Available abstract

The relative merits of conical vessels over conventional cylindrical ones have been highlighted in this paper. The necessity of a generalized correlation for prediction of fluctuation ratio in case of gassolid fluidization in conical beds has been emphasized. Data on fluidization for glass bead-air system with varying cone angles have been presented. A correlation in terms of system parameters has been developed for prediction of the fluctuation ratio and its calculated and experimental values compared.

Key concepts: Fluidization, Conical surface, Mechanics, Materials science, Thermodynamics, Mathematics, Physics, Geometry

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