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Dehydration by greenhouse effect of a product packed in a water permeable polymeric film: experimental approach and modelling

Rodriguez, Julio (2006) Dehydration by greenhouse effect of a product packed in a water permeable polymeric film: experimental approach and modelling. PhD thesis Génie energétique, ENSAM 2006ENAM0002.

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Abstract

The aim of this thesis is to study the physic of heat and mass transfers that occurs during the solar drying of a product packed in a particular polymeric film (only water molecules are able to cross such a film, by sorption-desorption phenomena). The purpose of this thesis is to offer a complete knowledge of this physic in order to be able to consider the dimensioning of a drying system using this type of films.
The procedure of this study is, after a presentation of the general principles of usual solar driers, to use a experimental and modelling approach. A model is established at the process scale (packed product subjected to a solar radiation) and validated by using an experimental system specially designed and realised for this purpose (measurement cell placed under a solar simulator). It is then used, in a simplified version, in order to study a particular industrial application (a product, spreading out on a horizontal support, covered by the polymeric film). This model is useful to dimension any system using this type of films, for which energy losses not related to evaporation process have been first estimated.

Item Type:PhD Thesis (PhD)
Thesis Supervisor:Bruneau, Denis
Date:January 2006
Board of examiners:Monchoux, Françoise and Vasseur, Jean and Bruneau, Denis and Gobbe, Claire and Pochat-Bohatier, Céline and Hulak, Isabelle
Ecole Doctorale:ED 432 ECOLE DOCTORALE SCIENCES DES METIERS DE L'INGENIEUR
Discipline:Génie energétique
Collection (Fonds):ENSAM
Institution:ENSAM
Subjects:5. Fluid Mechanics and Energy
Uncontrolled Keywords:Packed product, Polymer film, Solar drying, Greenhouse effect, Heat and mass transfers, Solar simulator, Produit emballé, Film polymère, Séchage solaire, Effet de serre, Transports couplés de chaleur et de masse, Simulateur solaire
ID Code:2348
Deposited By:Christine Ollendorff
Deposited On:07 May 2007

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