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Numerical simulation of heat and mass transfer in fluidised bed heat treatment furnaces

journal contribution
posted on 2002-09-09, 00:00 authored by Weimin Gao, Lingxue KongLingxue Kong, Peter HodgsonPeter Hodgson
In this paper, a novel combined theoretical and computational model is developed to simulate the heat and mass transfer between a fluidised bed and a workpiece surface, and within the workpiece by considering the fluidised bed as a medium consisting of a double-particle layer and an even porous layer. The heat and mass-transfer flux from the fluidised bed to the workpiece surface is contributed by dense and bubble phases, respectively. The convective heat and mass transfer is simulated by analysing the gas dynamics in the fluidised bed, while radiative heat transfer is modelled by simulating photon emission in a three-dimensional particle array. The simulation shows that convection is approximately constant, while radiation contributes significantly to the heat transfer. The heat-transfer coefficient on an immersed surface near particles is about 6–10 times that on other areas. The transient heat and mass-transfer coefficient, heat and mass-transfer flux on any surface of the workpiece, transient temperature and carbon distributions at any position of the workpiece during the metal carburising process are studied with the simulation.

History

Journal

Journal of materials processing technology

Volume

125-126

Issue

9

Pagination

170 - 178

Publisher

Elsevier

Location

Amsterdam, Netherlands

ISSN

0924-0136

eISSN

1873-4774

Language

eng

Notes

Available online 6 September 2002.

Publication classification

C1 Refereed article in a scholarly journal

Copyright notice

2002, Elsevier Science B.V.