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| dc.contributor.author |
Ouadah, Ilyes |
|
| dc.contributor.author |
Boutte, Aissa ( Promotrice) |
|
| dc.contributor.author |
Badereddine, Aimad Eddine ( Promoteur) |
|
| dc.date.accessioned |
2026-01-07T10:57:03Z |
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| dc.date.available |
2026-01-07T10:57:03Z |
|
| dc.date.issued |
2025-05 |
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| dc.identifier.uri |
https://di.univ-blida.dz/jspui/handle/123456789/41252 |
|
| dc.description |
ill., Bibliogr. Cote:043/2025 structure Aéronautique |
fr_FR |
| dc.description.abstract |
This thesis details the design and validation of a novel Blended-Wing-Body (BWB) MediumAltitude,
Long-Endurance (MALE) UAV, developed to meet the challenging performance
requirements of the Algerian Space Agency (ASAL). The research addresses the need for
a platform capable of extended endurance with a significant payload, a gap not filled by
conventional designs.
A custom Multidisciplinary Design Optimization (MDO) framework was created to produce
an aerodynamically efficient airframe, yielding a final design with a predicted endurance
of 7.4 hours. The aircraft’s performance and flight characteristics were then rigorously
validated. This validation process integrated high-fidelity Computational Fluid Dynamics
(CFD) with experimental data from wind tunnel testing of a physical prototype.
The results provide a definitive confirmation of the aircraft’s inherent stability. A negative
pitching moment slope was observed across all analyses, guaranteeing static stability, while
subsequent simulations confirmed all critical flight modes are dynamically stable. This work
successfully delivers a complete, validated design for a next-generation UAV and establishes
a repeatable computational workflow, providing a foundational platform for future national
scientific and technological development.
Keywords Blended-Wing-Body MALE UAV; solar-extended endurance; lattice structures;
multidisciplinary design optimization; computational fluid dynamics ; wind tunnel testing; flight stability; Algerian Space Agency. |
fr_FR |
| dc.language.iso |
en |
fr_FR |
| dc.publisher |
Université Blida 01 |
fr_FR |
| dc.subject |
Blended-Wing-Body MALE UAV |
fr_FR |
| dc.subject |
solar-extended endurance |
fr_FR |
| dc.subject |
wind tunnel testing |
fr_FR |
| dc.subject |
flight stability |
fr_FR |
| dc.subject |
Algerian Space Agency |
fr_FR |
| dc.title |
Design of Lightweight Blended-Wing-Body MALE UAV with Solar-Extended Endurance Via Novel Lattice Structures |
fr_FR |
| dc.type |
Thesis |
fr_FR |
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