Publisher URL: | http://www.fzt.haw-hamburg.de/pers/Scholz/Airport2030/Airport2030_PUB_AEGATS2018_Flutter_Characteristics_of_a_BWA_18-10-23.pdf http://web.archive.org/web/20180816025554/https://aegats2018.com |
Publisher DOI: | 10.15488/4097 | Title: | Flutter Characteristics of Typical Wing Sections of a Box Wing Aircraft Configuration | Language: | English | Authors: | Fazelzadeh, S. Ahmad Scholz, Dieter Mazidi, Abbas Friswell, Michael I. |
Other : | Association Aéronautique et Astronautique de France | Keywords: | Flutter; BWA; Wing; Section; Aircraft; Boxwing; Configuration; Luftfahrt; Flugzeugaerodynamik; Aeroelastik; Luftfahrzeug; Verkehrsflugzeug; Tragflügel | Issue Date: | 2018 | Part of Series: | Proceedings of the AEGATS Conference 2018 | Conference: | Advanced Aircraft Efficient Global Air Transport System 2018 | Abstract: | In this paper, the aeroelastic modeling and conceptual flutter analysis of a simple 2-D box wing is investigated. For each wing the torsion and bending elasticity is simulated by two torsional and longitudinal springs at its elastic axis. Furthermore, the connection winglet is simulated by a longitudinal spring. The aeroelastic governing equations are derived using Lagrange’s equations. Also, for aeroelastic loads simulation on the box wing, the Theodorsen aerodynamic model is used. The effects of various design parameters such as front and rear wing physical and geometrical properties, the connection winglet angle and stiffness, and aircraft altitude on the flutter of the system are investigated. Results show that the connection winglet stiffness and angle have significant influence on the box wing flutter boundary. |
URI: | http://hdl.handle.net/20.500.12738/1103 | Institute: | Department Fahrzeugtechnik und Flugzeugbau Fakultät Technik und Informatik Forschungsgruppe Flugzeugentwurf und -systeme (AERO) |
Type: | Chapter/Article (Proceedings) |
Appears in Collections: | Publications without full text |
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