Identification of Thermal Properties and ...
Type de document :
Direction scientifique d'une publication (ouvrage, numéro spécial de revue, proceedings): Proceedings
Titre :
Identification of Thermal Properties and Thermodynamic Model for a Cement Mortar Containing PCM by Using Inverse Method
Auteur(s) :
Tittelein, Pierre [Auteur]
LabOratoire proCédés énergIe bâtimEnt [LOCIE]
Gibout, Stéphane [Auteur]
Laboratoire de Génie Thermique Énergétique et Procédés (EA1932) [LATEP]
Franquet, Erwin [Auteur]
Computational Approximation with discontinous Galerkin methods and compaRison with Experiments [CAGIRE]
Zalewski, Laurent [Auteur]
Université d'Artois [UA]
Laboratoire de Génie Civil et Géo-Environnement (LGCgE) - ULR 4515 [LGCgE]
Defer, Didier [Auteur]
Université d'Artois [UA]
Laboratoire de Génie Civil et Géo-Environnement (LGCgE) - ULR 4515 [LGCgE]

LabOratoire proCédés énergIe bâtimEnt [LOCIE]
Gibout, Stéphane [Auteur]
Laboratoire de Génie Thermique Énergétique et Procédés (EA1932) [LATEP]
Franquet, Erwin [Auteur]
Computational Approximation with discontinous Galerkin methods and compaRison with Experiments [CAGIRE]
Zalewski, Laurent [Auteur]

Université d'Artois [UA]
Laboratoire de Génie Civil et Géo-Environnement (LGCgE) - ULR 4515 [LGCgE]
Defer, Didier [Auteur]

Université d'Artois [UA]
Laboratoire de Génie Civil et Géo-Environnement (LGCgE) - ULR 4515 [LGCgE]
Titre de la manifestation scientifique :
IBPC 2015
Titre de la revue :
Energy Procedia
Éditeur :
Elsevier
Date de publication :
2015-11
ISSN :
1876-6102
Discipline(s) HAL :
Sciences de l'ingénieur [physics]/Matériaux
Sciences de l'ingénieur [physics]/Génie des procédés
Sciences de l'ingénieur [physics]/Mécanique [physics.med-ph]/Thermique [physics.class-ph]
Sciences de l'ingénieur [physics]/Génie des procédés
Sciences de l'ingénieur [physics]/Mécanique [physics.med-ph]/Thermique [physics.class-ph]
Résumé en anglais : [en]
The support of this study is a cement mortar containing a micro-encapsulated phase change material (PCM). The aim of this article is to identify by an inverse method the thermophysical properties of this composite material ...
Lire la suite >The support of this study is a cement mortar containing a micro-encapsulated phase change material (PCM). The aim of this article is to identify by an inverse method the thermophysical properties of this composite material and all the parameters that are needed to build a physical model able to simulate the thermal behavior of a material containing PCM with accuracy. This approach consist in estimating different parameters that take place in the analytical relation of the enthalpy as a function of the temperature (h(T)) by comparing the response of the model with experimental results (here, heat flux measurement). A simplex algorithm allowed to minimize the quadratic criterion associated. The results obtained by inverse method are then analyzed and compared by experimental results obtained by direct method.Lire moins >
Lire la suite >The support of this study is a cement mortar containing a micro-encapsulated phase change material (PCM). The aim of this article is to identify by an inverse method the thermophysical properties of this composite material and all the parameters that are needed to build a physical model able to simulate the thermal behavior of a material containing PCM with accuracy. This approach consist in estimating different parameters that take place in the analytical relation of the enthalpy as a function of the temperature (h(T)) by comparing the response of the model with experimental results (here, heat flux measurement). A simplex algorithm allowed to minimize the quadratic criterion associated. The results obtained by inverse method are then analyzed and compared by experimental results obtained by direct method.Lire moins >
Langue :
Anglais
Audience :
Internationale
Source :
Fichiers
- j.egypro.2015.11.265
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