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dc.contributor.authorBenseghir, Ines-
dc.contributor.authorAib, Meriem Malika-
dc.contributor.otherBelkacemi, Yacine, Directeur de thèse-
dc.contributor.otherBouhelal, Abdelhamid, Directeur de thèse-
dc.contributor.otherSmaili, Arezki, Directeur de thèse-
dc.date.accessioned2025-12-18T08:51:43Z-
dc.date.available2025-12-18T08:51:43Z-
dc.date.issued2025-
dc.identifier.otherEP01047-
dc.identifier.urihttp://repository.enp.edu.dz/jspui/handle/123456789/11365-
dc.descriptionMémoire de Projet de Fin d’Études : Génie Mécanique : Alger, École Nationale Polytechnique : 2025fr_FR
dc.description.abstractThis work presents the design, fabrication, and evaluation of a lightweight Savonius wind turbine rotor using a sandwich structure made of a 3D­printed gyroid core and bio­sourced composite skins. The objective was to enhance rotor responsiveness at low wind speeds while reducing mass and maintaining structural integrity. A combined experimental and numerical approach was adopted to characterize the material and validate the rotor behavior. The final structure achieved a 48.6% reduction in mass compared to a PLA equivalent, while maintaining structural integrity under operational loads, with maximum deformation not exceeding 0.05% of the rotor height. The results confirm the potential of combining bio­based composites with TPMS architectures for the development of lightweight, structurally efficient solutions.fr_FR
dc.language.isoenfr_FR
dc.subjectSavonius wind turbinefr_FR
dc.subjectBio­based compositesfr_FR
dc.subjectGyroid latticefr_FR
dc.subject3D printingfr_FR
dc.subjectCFDfr_FR
dc.subjectFSIfr_FR
dc.titleDevelopment of a savonius Wind turbine prototype: design and fabrication of sandwich rotor blades with gyroid lattice core and hybrid composite skinsfr_FR
dc.typeThesisfr_FR
Collection(s) :Département Génie Mécanique

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