PG-EAM - Graduate Program in Aeronautical and Mechanical Engineering
PT EN
Article 2021

Explicit finite element method for nonlinear flutter analysis of composite panels

Authors

Tsunematsu, Douglas Quintanilha
Reis, Vitor Luiz

Thin Walled Structures , vol. 165 , Article 107964

ISSN: 02638231

5
Citations
3
Authors

Abstract

© 2021 Elsevier LtdThis work presents an efficient explicit finite element model for predicting the nonlinear aeroelastic behavior of composite panels in the supersonic regime. The first-order shear deformation plate theory in conjunction with the von Kármán nonlinear strains is used for structural modeling and the linear piston theory is used to model the aerodynamic loads. In order to reduce the computational cost of the simulations, a lumping procedure is employed in the mass and aerodynamic damping matrices of the finite element model. No modal reduction is performed and the central difference method is used for the numerical direct integration in time of the nonlinear equations. The model is verified using results from the literature and it is demonstrated that the lumping procedure drastically reduces the computational cost of the simulations.

Keywords

Aeroelasticity Central difference method Composites Finite element method Panel flutter

Civil and Structural Engineering (ENGI) Building and Construction (ENGI) Mechanical Engineering (ENGI)
: Scopus
Last Update: 2026-06-25
: 2-s2.0-85107031482
PII: S0263823121003220