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A critical evaluation of the Hénon's technique for solving aeroelastic problems with control surface friction and freeplay

Grant number: 18/23348-6
Support type:Scholarships abroad - Research Internship - Scientific Initiation
Effective date (Start): January 21, 2019
Effective date (End): March 10, 2019
Field of knowledge:Engineering - Mechanical Engineering - Mechanics of Solids
Principal researcher:Douglas Domingues Bueno
Grantee:Larissa Drews Wayhs Lopes
Supervisor abroad: Earl Dowell
Home Institution: Faculdade de Engenharia (FEIS). Universidade Estadual Paulista (UNESP). Campus de Ilha Solteira. Ilha Solteira , SP, Brazil
Research place: Duke University, United States  
Associated to the scholarship:17/08008-1 - Analysis of gust response including control surface freeplay and friction, BP.IC

Abstract

It is known that the presence of nonlinearities in aeroelastic systems can change the dynamic of flight. Particularly, freeplay and friction in control surfaces can modify the aircraft stability, even resulting in flight envelope limitations. According to the literature, the inclusion of freeplay requires time domain analysis using the Hénon's technique to avoid numerical errors. However, a critical evaluation of this issue considering the simultaneous effect of friction and asymmetric freeplay have been neglected by the scientific community, although they are typical nonlinearities in aeroelastic systems. In this context, this proposal includes an analytical and numerical study of the time domain aeroelastic responses for an one and a three degrees of freedom airfoil considering the effect of hinge line friction and asymmetric control surface freeplay. In particular, the focus is to investigate the viability of using the Hénon's approach in comparison with a classical Runge-Kutta algorithm when these two nonlinearities are considered. (AU)

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Scientific publications
(References retrieved automatically from Web of Science and SciELO through information on FAPESP grants and their corresponding numbers as mentioned in the publications by the authors)
WAYHS-LOPES, LARISSA DREWS; DOWELL, EARL H.; BUENO, DOUGLAS D. Influence of friction and asymmetric freeplay on the limit cycle oscillation in aeroelastic system: An extended Henon's technique to temporal integration. JOURNAL OF FLUIDS AND STRUCTURES, v. 96, JUL 2020. Web of Science Citations: 0.

Please report errors in scientific publications list by writing to: cdi@fapesp.br.