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                                       Details for article 35 of 37 found articles
 
 
  Superheated Steam Drying of a Single Particle in an Impinging Stream Dryer
 
 
Title: Superheated Steam Drying of a Single Particle in an Impinging Stream Dryer
Author: Hosseinalipour, S. M.
Mujumdar, A. S.
Appeared in: Drying technology
Paging: Volume 13 (1995) nr. 5-7 pages 1279-1303
Year: 1995
Contents: Impinging stream contactors provide a novel configuration for drying and/or chemical reactions of particulates, pastes or suspensions which can be dispersed in a flowing gas stream. Essentially they consist of one or more highly turbulent “impingement” zones formed by collision of two opposing jets (OJ) in a confied channel or duct. The objective of this paper is to present computational fluid dynamic predictions for two-dimensional turbulent opposing jets over a range of nozzle-to-nozzle separations and jet Reynolds numbers for the simulation of single particle drying in these systems using superheated steam. A number of different turbulence models were tested ( e.g. high Reynolds, Lam-Bremhorst, Launder and Sharma models etc.). Predictions are performed in two distinct parts. In the first part a power law, finite volume method based on the “SIMPLEC” algorithm is used to solve the momentum and energy conservation equations for air in OJ systems in order to gain insight into their
Publisher: Taylor & Francis
Source file: Elektronische Wetenschappelijke Tijdschriften
 
 

                             Details for article 35 of 37 found articles
 
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