International audienceThis paper proposes to use a polynomial chaos expansion approach to compute stochastic complex eigenvalues and eigenvectors of structures including damping or gyroscopic effects. Its application to a finite element rotor model is compared to Monte Carlo simulations. This lets us validate the method and emphasize its advantages. Three different uncertain configurations are studied. For each, a stochastic Campbell diagram is proposed and interpreted and critical speeds dispersion is evaluated. Furthermore, an adaptation of the Modal Accordance Criterion is proposed in order to monitor the eigenvectors dispersion
The uncertainty propagation in mechanical systems through model calculations was analyzed in this ar...
International audienceUncertainties are present in the modeling of dynamical systems and they must b...
The first two moments of the steady-state response of a dynamical random system are determined throu...
AbstractStructural uncertainties greatly influence the dynamic responses of engineering structures. ...
International audienceThis study aims at pointing out the somehow complex behavior of the structural...
Analysis of vibration of systems with uncertainty in material properties under the influence of a ra...
International audienceThis article deals with the stochastic modeling of industrial mistuned bladed ...
International audienceThe calculated dynamic response of an excited rotating system can be significa...
An enrichment scheme based upon the Neumann expansion method is proposed to augment the deterministi...
The random eigenvalue problem arises in frequency and mode shape determination for a linear system w...
AbstractIn this paper, a collocation–based stochastic model is proposed to analysis mistuned bladed–...
This paper presents a procedure of conducting Stochastic Finite Element Analysis using Polynomial Ch...
summary:Recent developments in the field of stochastic mechanics and particularly regarding the stoc...
Response analysis of a linear structure with uncertainties in both structural parameters and externa...
The response of a random dynamical system is totally characterized by its probability density functi...
The uncertainty propagation in mechanical systems through model calculations was analyzed in this ar...
International audienceUncertainties are present in the modeling of dynamical systems and they must b...
The first two moments of the steady-state response of a dynamical random system are determined throu...
AbstractStructural uncertainties greatly influence the dynamic responses of engineering structures. ...
International audienceThis study aims at pointing out the somehow complex behavior of the structural...
Analysis of vibration of systems with uncertainty in material properties under the influence of a ra...
International audienceThis article deals with the stochastic modeling of industrial mistuned bladed ...
International audienceThe calculated dynamic response of an excited rotating system can be significa...
An enrichment scheme based upon the Neumann expansion method is proposed to augment the deterministi...
The random eigenvalue problem arises in frequency and mode shape determination for a linear system w...
AbstractIn this paper, a collocation–based stochastic model is proposed to analysis mistuned bladed–...
This paper presents a procedure of conducting Stochastic Finite Element Analysis using Polynomial Ch...
summary:Recent developments in the field of stochastic mechanics and particularly regarding the stoc...
Response analysis of a linear structure with uncertainties in both structural parameters and externa...
The response of a random dynamical system is totally characterized by its probability density functi...
The uncertainty propagation in mechanical systems through model calculations was analyzed in this ar...
International audienceUncertainties are present in the modeling of dynamical systems and they must b...
The first two moments of the steady-state response of a dynamical random system are determined throu...