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Simulation Numerique du Transfert de Chaleur A Ttravers Une Enceinte Carrée Remplie d'un Nano-Matériau A changement de Phase (NANO-MCP)

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dc.contributor.author Kechid, Rayene
dc.contributor.author Grouche, Lamis
dc.contributor.author Benkouiten, Meriem
dc.contributor.author Mme. BOUSEBA, Loubna
dc.date.accessioned 2025-02-03T11:28:59Z
dc.date.available 2025-02-03T11:28:59Z
dc.date.issued 2024
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/5922
dc.description.abstract Nano-PCM are innovative systems for controlling energy demand and reducing the release of pollutants. In this study, the COMSOL commercial software is used to simulate the phase change phenomenon, in the presence of natural convection, of two Nano-MCP (Ag-PCM and TiO2-PCM) in a closed square enclosure. The mathematical model is a system of differential equations: the continuity equation, the Navier-Stockes equations and the energy equation. The phase change process in the PCM belongs to a class of physical problems known as moving boundary problems. Velocity and thermal fields and enthalpy are plotted. The displacement of the interface as a function of time is also discussed. The study compares the influence of two types of nanoparticles on pure PCM, and examines the impact of the percentage of these nanoparticles on the phenomenon, according to selected models from the literature on calculating the physical properties of Nano-PCM. The results show good agreement with the literature. en_US
dc.language.iso fr en_US
dc.publisher Université Constantine 3 Salah Boubnider Faculté génie des procédés en_US
dc.subject Nano-PCM, natural convection, moving border, energy storage, simulation en_US
dc.title Simulation Numerique du Transfert de Chaleur A Ttravers Une Enceinte Carrée Remplie d'un Nano-Matériau A changement de Phase (NANO-MCP) en_US
dc.type Other en_US


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