The coupled bending-torsion flutter is here investigated through Carrera Unified Formulation (CUF). The hierarchical capabilities of CUF offer a procedure to obtain refined one-dimensional models that, by going beyond the assumptions of classical theories, accurately describe the kinematics of structures. Aerodynamic loadings have been determined according to Theodorsen theory, from which the steady formulation can be easily obtained. The displacement variables over the cross section (x-z plane) are approximated by x,z polynomials of any order, N. The finite element method is used to solve the governing equations, which are derived in a weak form through the principle of virtual displacements. The equations are written in terms of “f...
An advanced aeroelastic formulation for flutter analyses is presented in this paper. Refined 1D stru...
A refined beam model with hierarchical features is in this work extended to the static aeroelastic a...
An aeroelastic stability analysis is presented for high-aspect ratio composite wings. The structural...
The coupled bending-torsion flutter is here investigated through Carrera Unified Formulation (CUF). ...
Flutter analyses of composite lifting surfaces are presented in this paper. Results were obtained th...
Carrera Unified Formulation (CUF) is used to perform flutter analyses of fixed and rotary wings. The...
Carrera Unified Formulation (CUF) is used to perform flutter analyses of fixed and rotary wings. The...
Aeroelasticity is an essential tool for the analysis and design of structures whose operating condit...
Aeroelasticity is an essential tool for the analysis and design of structures whose operating condit...
The extension of a hierarchical one-dimensional structural model to aeroelasticity is the subject o...
Aeroelastic phenomena can occur to many engineering structures: aircraft wings, rotor blades, wind t...
Aeroelasticity is an essential tool for the analysis and design of structures whose operating condit...
Abstract The flutter analysis of rotary laminated structures has been performed using Carrera Unifie...
An advanced model for the linear flutter analysis is introduced in this paper. Higher-order beam str...
An advanced aeroelastic formulation for flutter analyses is presented in this paper. Refined 1D stru...
An advanced aeroelastic formulation for flutter analyses is presented in this paper. Refined 1D stru...
A refined beam model with hierarchical features is in this work extended to the static aeroelastic a...
An aeroelastic stability analysis is presented for high-aspect ratio composite wings. The structural...
The coupled bending-torsion flutter is here investigated through Carrera Unified Formulation (CUF). ...
Flutter analyses of composite lifting surfaces are presented in this paper. Results were obtained th...
Carrera Unified Formulation (CUF) is used to perform flutter analyses of fixed and rotary wings. The...
Carrera Unified Formulation (CUF) is used to perform flutter analyses of fixed and rotary wings. The...
Aeroelasticity is an essential tool for the analysis and design of structures whose operating condit...
Aeroelasticity is an essential tool for the analysis and design of structures whose operating condit...
The extension of a hierarchical one-dimensional structural model to aeroelasticity is the subject o...
Aeroelastic phenomena can occur to many engineering structures: aircraft wings, rotor blades, wind t...
Aeroelasticity is an essential tool for the analysis and design of structures whose operating condit...
Abstract The flutter analysis of rotary laminated structures has been performed using Carrera Unifie...
An advanced model for the linear flutter analysis is introduced in this paper. Higher-order beam str...
An advanced aeroelastic formulation for flutter analyses is presented in this paper. Refined 1D stru...
An advanced aeroelastic formulation for flutter analyses is presented in this paper. Refined 1D stru...
A refined beam model with hierarchical features is in this work extended to the static aeroelastic a...
An aeroelastic stability analysis is presented for high-aspect ratio composite wings. The structural...