CFD-based time-domain aeroelastic simulations of a twin-fudelage aircraft
Aircraft Engineering and Aerospace Technology
ISSN: 0002-2667
Article publication date: 19 April 2022
Issue publication date: 5 December 2022
Abstract
Purpose
The purpose of this paper is to introduce a novel method to study the flutter coupling mechanism of the twin-fuselage aircraft, which is becoming a popular transportation vehicle recently.
Design/methodology/approach
A new method of flutter mode indicator is proposed based on the principle of work and power, which is realized through energy accumulation of generalized force work on generalized coordinates, based on which flutter coupling mechanism of the twin-fuselage aircraft is studied using ground vibration test and computational fluid dynamics/computational solid dynamics method.
Findings
Verification of the proposed flutter mode indicator is provided, by which the flutter mechanism of the twin fuselage is found as the horizontal tail’s torsion coupled with its bending effect and the “frequency drifting” phenomenon of twin-fuselage aircraft is explained logically, highlighting the proposed method in this paper.
Originality/value
This paper proposed a new method of flutter mode indicator, which has advantages in flutter modes indexes reliability, clear physical meaning and results normalization. This study found the flutter coupling mechanism of twin-fuselage aircraft, which has important guiding significance to the development of twin-fuselage aircraft.
Keywords
Citation
Wang, X., Liu, Z., Guo, L., Lv, J. and Ji, C. (2022), "CFD-based time-domain aeroelastic simulations of a twin-fudelage aircraft", Aircraft Engineering and Aerospace Technology, Vol. 94 No. 10, pp. 1646-1660. https://doi.org/10.1108/AEAT-08-2021-0261
Publisher
:Emerald Publishing Limited
Copyright © 2022, Emerald Publishing Limited