Global stability analysis of parametrically excited cylindrical shells through the evolution of basin boundaries
DOI10.1007/S11071-006-9147-4zbMath1181.74061OpenAlexW2083905153MaRDI QIDQ842207
Zenón J. G. N. Del Prado, Paulo Batista Gonçalves, Frederico Martins Alves da Silva
Publication date: 22 September 2009
Published in: Nonlinear Dynamics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s11071-006-9147-4
Stability of dynamical problems in solid mechanics (74H55) Shells (74K25) Numerical approximation of solutions of dynamical problems in solid mechanics (74H15) Dynamical bifurcation of solutions to dynamical problems in solid mechanics (74H60)
Related Items (5)
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- Bifurcations in a forced softening Duffing oscillator
- Identifying, evaluating, and controlling dynamical integrity measures in non-linear mechanical oscillators
- Hidden symmetry concepts in the elastic buckling of axially-loaded cylinders
- Effect of finite element choice in blunt crack band analysis
- Explicit lower bounds for the buckling of axially loaded cylinders
- Stability and vibration of empty and fluid-filled circular cylindrical shells under static and periodic axial loads.
- Nonlinear oscillations and stability of parametrically excited cylindrical shells
- Basin boundary metamorphoses: Changes in accessible boundary orbits
- Dynamic stability problems of anisotropic cylindrical shells via a simplified analysis
- Low-dimensional Galerkin models for nonlinear vibration and instability analysis of cylindrical shells
- Modal equations for the nonlinear flexural vibrations of a cylindrical shell
- Non-linear vibration analysis of fluid-filled cylindrical shells
- Integrity measures quantifying the erosion of smooth and fractal basins of attraction
- BASIN EROSION IN THE TWIN-WELL DUFFING OSCILLATOR: TWO DISTINCT BIFURCATION SCENARIOS
This page was built for publication: Global stability analysis of parametrically excited cylindrical shells through the evolution of basin boundaries