Abstract
This study addresses the frequency–amplitude relationship of a nonlinear symmetric panel absorber mounted on a flexible wall. In many structural–acoustic works, only one flexible panel is considered in their models with symmetric configuration. There are very limited research investigations that focus on two flexible panels coupled with a cavity, particularly for nonlinear structural–acoustic problems. In practice, panel absorbers with symmetric configurations are common and usually mounted on a flexible wall. Thus, it should not be assumed that the wall is rigid. This study is the first work employing the weighted residual elliptic integral method for solving this problem, which involves the nonlinear multi-mode governing equations of two flexible panels coupled with a cavity. The reason for adopting the proposed solution method is that fewer nonlinear algebraic equations are generated. The results obtained from the proposed method and finite element method agree reasonably well with each other. The effects of some parameters such as vibration amplitude, cavity depth and thickness ratio, etc. are also investigated.
Highlights
Symmetry 2021, 13, 1188. https://Panel absorbers are used to control sound reflection, absorption, echo and reverberation in a room
This study study has has presented presented the the formulations formulations for for aa nonlinear nonlinear symmetric symmetric panel panel absorber absorber mounted on a flexible wall, and has developed the frequency–amplitude relationship
This mounted on a flexible wall, and has developed the frequency–amplitude relationship
Summary
Symmetry 2021, 13, 1188. https://Panel absorbers are used to control sound reflection, absorption, echo and reverberation in a room. By setting an initial vibration amplitude for the nonlinear symmetric panel and solving the following weighted two residual equations, the unknown constant K A can be found.
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