Analysis of the Nonlinear Dynamics of the Timoshenko Flexible Beams Using Wavelets

Author:

Awrejcewicz J.1,Krysko A. V.2,Soldatov V.2,Krysko V. A.2

Affiliation:

1. Technical University of Lodz, Department of Automation and Biomechanics, 1/15 Stefanowski St., 90-924 Lodz, Poland

2. Saratov State Technical University, Department of Mathematics and Modeling, 77 Polytechnical, Saratov, 410054, Russia

Abstract

Regular and chaotic dynamics of the flexible Timoshenko-type beams is studied using both the standard Fourier (FFT) and the continuous wavelet transform methods. The governing equations of motion for geometrically nonlinear Timoshenko-type beams are reduced to a system of ODEs using both finite element method (FEM) and finite difference method (FDM) to ensure the reliability of numerical results. Scenarios of transition from regular to chaotic vibrations and beam dynamical stability loss are analyzed. Advantages and disadvantages of various wavelet functions are discussed. Application of continuous wavelet transform to the investigation of transitional and chaotic phenomena in nonlinear dynamics is illustrated and discussed.

Publisher

ASME International

Subject

Applied Mathematics,Mechanical Engineering,Control and Systems Engineering,Applied Mathematics,Mechanical Engineering,Control and Systems Engineering

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