Informations du chercheur

Nom complet

EL QARNIA Hamid

Grade

PES

Spécialité

Energétique

Thématique de recherche

Transfert de chaleur par conduction, convection et rayonnement, Fusion et solidification, Stockage de l'énergie

Laboratoire

Laboratoire de Mécanique des Fluides et d’Energétique

Établissement

Faculté des Sciences Semlalia Marrakech

Publications (17 au total)

Numerical Study of a Shell-and-Tube Latent Thermal Energy Storage Unit Heated by Laminar Pulsed Fluid Flow

Auteur: Radouane Elbahjaoui, Hamid El Qarnia

Revue: Heat Transfer Engineering

Année: 2017

ransient behavior analysis of the melting of nanoparticle-enhanced phase change material inside a rectangular latent heat storage unit

Auteur: Radouane Elbahjaoui, Hamid El Qarnia

Revue: Applied Thermal Engineering

Année: 2017

Melting of nanoparticle-enhanced phase change material in a shell-and-tube latent heat storage unit heated by laminar pulsating fluid flow

Auteur: Radouane Elbahjaoui, Hamid El Qarnia

Revue: Computational Thermal Sciences

Année: 2017

Thermal analysis of nanoparticle-enhanced phase change material solidification in a rectangular latent heat storage unit including natural convection’

Auteur: Radouane Elbahjaoui, Hamid El Qarnia

Revue: Energy and Buildings

Année: 2017

Numerical study of the melting of Nano-PCM in a rectangular storage unit heated by upward heat transfer fluid

Auteur: Radouane Elbahjaoui, Hamid El Qarnia, Mohammed El Ganaoui

Revue: Energy Procedia

Année: 2017

Solidification heat transfer characteristics of nanoparticle-enhanced phase change material inside rectangular slabs

Auteur: Radouane Elbahjaoui, Hamid El Qarnia, Mohammed El Ganaoui

Revue: Energy Procedia

Année: 2017

Numerical investigations of melting of nano-enhanced phase change material (NEPCM) in a rectangular enclosure heated by laminar HTF flow

Auteur: Radouane Elbahjaoui, Hamid El Qarnia, Mohammed El Ganaoui

Revue: The European Physical Journal Applied Physics

Année: 2016

Numerical investigation of heat transfer during solidification in a rectangular enclosure with internally horizontal partial fins

Auteur: Laila Khatra, Hamid El Qarnia, Mohammed El Ganaoui, El Khadir Lakhal

Revue: Computational Thermal Sciences

Année: 2015

Communications (30 au total)

Investigation of melting process in a double tube energy storage unit: effect of the eccentricity of the inner tube

Manifestation: IEEE, SMARTAGRI & SUSY 2025

Date: 2025-12-9

Organisation: Marrakech

Exergy and energy analysis of eccentricity and flow rate effects on melting process in a triplex tube latent heat storage unit

Manifestation: International conference on Basic Sciences, Engineering and Technology (ICBASET 2025)

Date: 2025-05-04

Organisation: Trabzon, Turkiye

Effect of the eccentricity and flow direction on the melting process of a PCM inside a triplex tube

Manifestation: 11ème édition JET 2024

Date: 2024-11-15

Organisation: Marrakech

Melting process of moderate melting temperature PCM inside a vertically oriented shell and tube latent heat thermal energy storage unit: effect of the eccentricity of the inner tube

Manifestation: 11th edition JET 2024

Date: 2024-11-15

Organisation: Marrakech

A mesoscopic appraoch of water sorption in (montmorillonite/ vinyl-ester) polymer-based nanocomposite membranes

Manifestation: 16ème Congrès de Mécanique

Date: 2024-05-21

Organisation: Marrakech

Effects of Slip Mechanisms on (Nano/PCM) Melting Process

Manifestation: Congrès de Mécanique

Date: 2024-05-21

Organisation: Marrakech

xploring the Impact of Brownian Motion on Nano-PCM Melting: A LBM Investigation with Buongiorno's Mathematical Model

Manifestation: The sixth edition of the international conference on research in applied mathematics and computer science

Date: 2024-04-25

Organisation: Marrakech

Permeation of DCM through PDMS/Clay nanocomposite membrane

Manifestation: 8thInternational Congress of Thermal Sciences AMT 2024

Date: 2024-04-25

Organisation: AL HOCEIMA

Analyzis of melting of nanoPCM in the presence of brownian motion and thermophoresis diffusion using lattice Boltzmann method

Manifestation: 8thInternational Congress of Thermal Sciences AMT 2024

Date: 2024-04-25

Organisation: Al Hoceima