Titre : |
Design and manufacture of a windmill for pumping water |
Type de document : |
document électronique |
Auteurs : |
Hichem Idris Aouidad, Auteur ; Mohamed Amine Ammari, Auteur ; Abdelhamid Bouhelal, Directeur de thèse ; Benbraika, Mohamed, Directeur de thèse |
Editeur : |
[S.l.] : [s.n.] |
Année de publication : |
2024 |
Importance : |
1 fichier PDF (4.6 Mo) |
Note générale : |
Mode d'accès : accès au texte intégral par intranet.
Mémoire de Projet de Fin d’Études : Génie Mécanique : Alger, École Nationale Polytechnique : 2024
Bibliogr. p. 91-94. - Appendices |
Langues : |
Anglais (eng) |
Mots-clés : |
Wind energy
Windmill
Reverse engineering
Aerodynamic analysis
CFD |
Index. décimale : |
PM01224 |
Résumé : |
This project addresses the critical need for decentralized water production by developing a wind-powered water pumping system. Using reverse engineering and rigorous optimization, parts were designed with CAD software, a scale model was created via 3D printing, and CFD simulations were employed to analyze aerodynamic performance. The wind pump showed significantly higher pumping capacity than the one installed at the POVAL company. The scaled-down wind turbine model was tested in a wind tunnel to validate the simulation results. |
Design and manufacture of a windmill for pumping water [document électronique] / Hichem Idris Aouidad, Auteur ; Mohamed Amine Ammari, Auteur ; Abdelhamid Bouhelal, Directeur de thèse ; Benbraika, Mohamed, Directeur de thèse . - [S.l.] : [s.n.], 2024 . - 1 fichier PDF (4.6 Mo).
Mode d'accès : accès au texte intégral par intranet.
Mémoire de Projet de Fin d’Études : Génie Mécanique : Alger, École Nationale Polytechnique : 2024
Bibliogr. p. 91-94. - Appendices Langues : Anglais ( eng)
Mots-clés : |
Wind energy
Windmill
Reverse engineering
Aerodynamic analysis
CFD |
Index. décimale : |
PM01224 |
Résumé : |
This project addresses the critical need for decentralized water production by developing a wind-powered water pumping system. Using reverse engineering and rigorous optimization, parts were designed with CAD software, a scale model was created via 3D printing, and CFD simulations were employed to analyze aerodynamic performance. The wind pump showed significantly higher pumping capacity than the one installed at the POVAL company. The scaled-down wind turbine model was tested in a wind tunnel to validate the simulation results. |
|