Dynamics of heat mass exchange is in a layer of dispersed material during capsulation in a state of fluidizing
DOI:
https://doi.org/10.15587/1729-4061.2013.12431Keywords:
Heat exchange, mass exchange, mass exchange surface, capsulation, physical model, dispersed materials, fluidized layerAbstract
The article presents the results of studies of the complex heat mass exchange in a layer of dispersed material during the capsulation by film-forming solutions in a state of fluidization. We have singled out three conventional phases of the heat mass exchange with the irrigation of the solid material by the film-forming solution. It was shown that only a part of the surface of the solid material is involved into the heat mass exchange. We have worked out the equation to determine the combined coefficient of heat transfer from the air to the surface of a particle during the capsulation, depending on the height of the layer. We have determined the particle surface area, which is involved in the mass exchange. We have calculated the mass exchange intensity with the height of the layer of dispersed material. The adequacy of the mathematical model was checked by experimental data. The results can be used to calculate the technological parameters of the capsulation of solid dispersed materials in a state of fluidization and to improve the operation of the boiling bed devicesReferences
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