Forced Vibration Analysis of a Beam Structure with Nonlinear Support Elements (2nd Report: Proposal of Stability Analysis Using a Reduction Model and Numerical Computational Results):(2nd Report: Proposal of Stability Analysis Using a Reduction Model and
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概要
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In computing a periodic steady-state vibration generated in a large-scale nonlinear structure by the incremental transfer stiffness coefficient method suggested in a previous paper, the stable and unstable solutions can be computed without distinction. Thus, the stability of the obtained solution must be examined. However, it is very difficult to analyze the stability of the solution of the nonlinear system with high degree of freedom. To overcome this difficulty, a method to reduce the dimension of the equation used for stability analysis without spoiling the accuracy is developed by applying the concept of modal analysis to the variational equation used for the stability analysis. Two types of modal matrices are considered in the reduction of dimension, and a method is proposed to extract the modes that dominate the stability of the solution. The validity of the incremental transfer stiffness coefficient method and the method of stability analysis using the reduction model is confirmed by numerical computational results.
- 一般社団法人 日本機械学会の論文
著者
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KONDOU Takahiro
Graduate School of Kyushu University, Dep. Mechanical Engineering
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SASAKI Takumki
The University of Kitakyushu, Dep. Environmental Engineering
関連論文
- Forced Vibration Analysis of a Beam Structure with Nonlinear Support Elements (1st Report: Proposal of an Incremental Transfer Stiffness Coefficient Method and Application to a Straight-line Beam Structure):(1st Report: Proposal of an Incremental Transfe
- Forced Vibration Analysis of a Beam Structure with Nonlinear Support Elements (2nd Report: Proposal of Stability Analysis Using a Reduction Model and Numerical Computational Results):(2nd Report: Proposal of Stability Analysis Using a Reduction Model and