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A numerical study of the melting of phase change material heated from a vertical wall of a rectangular enclosure
Authors:Annabelle Joulin  Zohir Younsi  Laurent Zalewski  Daniel R Rousse  Stéphane Lassue
Institution:1. LAMTI – Faculté des Sciences Appliquées de l'Université d'Artois , Technoparc Futura, 62400, Béthune Cedex, France annabelle.joulin@univ-artois.fr;3. LAMTI – Faculté des Sciences Appliquées de l'Université d'Artois , Technoparc Futura, 62400, Béthune Cedex, France;4. Faculté de Sciences Appliquées , Université du Québec à Chicoutimi , 555, boulevard de l'Université, Chicoutimi, Qc, G7H 2B1, Canada
Abstract:This article presents the first research effort of our group to formulate, implement and validate a numerical method in order to optimise the design of solar passive walls involving phase change materials (PCMs). The fusion of ice, gallium and the commercially available PCM 27 (hydrated salt), engineered by Cristopia and later embedded within an experiment unit, was studied. Comparisons against other prediction methods and experimental data for the fusion of gallium were carried out with good agreement of the solutions. The proposed enthalpy-based method is found to be excellent to predict the fusion, but still fails to reproduce adequately the exact solidification pattern measured for the PCM 27. Further research is going on to improve the model.
Keywords:phase change material  fixed-grid numerical method  enthalpy-porosity formulation  fusion
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