Numerical and Experimental Analysis of a NACA Shaped Fuselage of a Civil Aircraf Université de Liège
Van Hoye, Antoine
Promotor(s) :
Andrianne, Thomas
Date of defense : 29-Jun-2026/30-Jun-2026 • Permalink : http://hdl.handle.net/2268.2/26147
Details
| Title : | Numerical and Experimental Analysis of a NACA Shaped Fuselage of a Civil Aircraf Université de Liège |
| Author : | Van Hoye, Antoine
|
| Date of defense : | 29-Jun-2026/30-Jun-2026 |
| Advisor(s) : | Andrianne, Thomas
|
| Committee's member(s) : | Dechamps, Paul
Terrapon, Vincent
Rutten, Jean |
| Language : | English |
| Keywords : | [en] Fuselage aerodynamics [en] NACA airfoil [en] Drag prediction [en] Wind tunnel testing [en] RANS [en] Subsonic flow [en] Transonic flow [en] Side-of-body separation |
| Discipline(s) : | Engineering, computing & technology > Aerospace & aeronautics engineering |
| Institution(s) : | Université de Liège, Liège, Belgique |
| Degree: | Master en ingénieur civil en aérospatiale, à finalité spécialisée en "aerospace engineering" |
| Faculty: | Master thesis of the Faculté des Sciences appliquées |
Abstract
[en] This work investigates the aerodynamic performance of a non-conventional fuselage geometry and compares it against a conventional long-range airliner fuselage. Both configurations share identical wings and empennage, so that the comparison isolates the fuselage contribution. Three complementary approaches are used, namely subsonic wind tunnel testing, subsonic CFD, and transonic CFD, all performed with Simcenter STAR-CCM+. The study shows that the aerodynamic behaviour of the two configurations differs significantly depending on the flow regime considered. The physical mechanisms responsible for these differences are identified and discussed for each regime. The results highlight both the potential and the limitations of non-conventional fuselage shaping as an aerodynamic design strategy, and open directions for future geometric and methodological improvements.
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