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Variable kinematic finite element models of multilayered composite plates coupled with acoustic fluid

机译:多层复合材料板耦合声流体的运动学有限元模型

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摘要

This article presents a novel and advanced finite element formulation of the structural-acoustic problem involving thin and thick multilayered composite plates coupled with a cavity. Exploiting the Carrera's unified formulation, many plate and fluid-structure interface elements based on different kinematic models, including higher-order equivalent single-layer and layerwise theories, are developed within a single mathematical framework. Accordingly, a large number of vibro-acoustic models can be easily obtained and selected according to the accuracy requirements of the application. In particular, it is shown that refined models can be adopted in those cases where models relying on traditional or low-order plate theories fail in providing the correct estimation of the fluid-structure coupling. The proposed formulation is also validated with respect to some reference cases available in the literature.
机译:本文提出了一种结构声学问题的新颖且先进的有限元公式,该问题涉及薄而厚的多层复合板以及空腔。利用Carrera的统一公式,在单个数学框架内开发了许多基于不同运动学模型的板和流体结构界面元素,包括高阶等效单层理论和分层理论。因此,可以根据应用的精度要求容易地获得和选择大量的振动声学模型。特别地,显示出在那些依赖传统或低阶板理论的模型无法提供对流体-结构耦合的正确估计的情况下,可以采用改进的模型。相对于文献中提供的一些参考案例,所提出的配方也得到了验证。

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