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A simple first-order shear deformation theory for vibro-acoustic analysis of the laminated rectangular fluid-structure coupling system

机译:叠层矩形流固耦合系统振动声的简单一阶剪切变形理论

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摘要

This paper presents a simple first-order shear deformation theory (SFSDT), which is used for the first time to analyze the vibro-acoustic characteristics of the laminated rectangular plate-cavity coupling system filled with air or water. The proposed theory contains only four unknowns and has greater application scope and higher computation accuracy compared with the classical plate theory (CPT). The admissible functions of displacements and sound pressure of the fluid-structure coupling system are expressed as superposition of the periodic functions based on the Fourier series method. Combined with the artificial virtual spring technology, the proposed theory could be used to analyze the composite coupling system under various combinations of classical boundary conditions or arbitrary elastic boundary conditions. Based on the free vibration analysis of the laminated rectangular plate in-vacuo, both the natural characteristics analysis and the forced response analysis under the excitation of a unit point force or a unit point sound source are carried out. The differences between the weak coupling system with air as medium and the strong coupling system with water as medium are discussed in detail and some new results and new conclusions have been given, which could be the benchmark for the future research.
机译:本文提出了一种简单的一阶剪切变形理论(SFSDT),该理论首次用于分析填充有空气或水的矩形矩形板腔耦合系统的振动声特性。与经典的板块理论(CPT)相比,所提出的理论仅包含四个未知数,具有更大的应用范围和更高的计算精度。流固耦合系统的位移和声压的容许函数表示为基于傅里叶级数方法的周期函数的叠加。结合人工虚拟弹簧技术,该理论可用于分析经典边界条件或任意弹性边界条件的各种组合下的复合耦合系统。基于在真空中对层压矩形板的自由振动分析,进行了在单位点力或单位点声源的激励下的自然特性分析和强迫响应分析。详细讨论了以空气为介质的弱耦合系统和以水为介质的强耦合系统之间的区别,并给出了一些新的结果和新的结论,可以作为今后研究的基准。

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