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Titre : | 2D numerical modeling of unsteady magnetohydrodynamic flow in cylinder duct | Type de document : | texte manuscrit | Auteurs : | Abdelhak Kacemi, Auteur ; Ibrahim Sari, Directeur de thèse | Editeur : | Laghouat : Université Amar Telidji - Département de génie mécanique | Année de publication : | 2019 | Importance : | 52 p. | Format : | 30 cm. | Note générale : | Option : Énergétique | Langues : | Anglais | Mots-clés : | Magnetohydrodynamic Unsteady state Heat transfer Cylinder duct | Résumé : | This end-of-study project is essentially based on two-dimensional (2D) numerical study, unsteady magnetohydrodynamic flow In a tubular channel. The primary objective is to study the behavior of the dynamic and thermal fields under the effect of the variation of an external magnetic field in terms of variation of several dimensionless numbers. The adopted magnetic field is considered permanent and applied perpendicularly to the direction of flow of the conductive fluid. The equations governing the flow are not linear and cannot be solved analytically. Therefore, a numerical approach will be adopted to solve the theme. The finite difference method will be used as a method of numerical discretization of partial differential equations. A calculation code will be developed to solve the resulting system. The influence of the various dimensionless parameters on the temperature and velocity profiles will be discussed | note de thèses : | Mémoire de master en génie mécanique |
2D numerical modeling of unsteady magnetohydrodynamic flow in cylinder duct [texte manuscrit] / Abdelhak Kacemi, Auteur ; Ibrahim Sari, Directeur de thèse . - Laghouat : Université Amar Telidji - Département de génie mécanique, 2019 . - 52 p. ; 30 cm. Option : Énergétique Langues : Anglais Mots-clés : | Magnetohydrodynamic Unsteady state Heat transfer Cylinder duct | Résumé : | This end-of-study project is essentially based on two-dimensional (2D) numerical study, unsteady magnetohydrodynamic flow In a tubular channel. The primary objective is to study the behavior of the dynamic and thermal fields under the effect of the variation of an external magnetic field in terms of variation of several dimensionless numbers. The adopted magnetic field is considered permanent and applied perpendicularly to the direction of flow of the conductive fluid. The equations governing the flow are not linear and cannot be solved analytically. Therefore, a numerical approach will be adopted to solve the theme. The finite difference method will be used as a method of numerical discretization of partial differential equations. A calculation code will be developed to solve the resulting system. The influence of the various dimensionless parameters on the temperature and velocity profiles will be discussed | note de thèses : | Mémoire de master en génie mécanique |
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MGM 02-58 | MGM 02-58 | Thése | BIBLIOTHEQUE DE FACULTE DE TECHNOLOGIE | Genie mécanique (TEC) | Disponible |