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Numerical analysis of acoustic radiation responses of shear deformable laminated composite shell panel in hygrothermal environment

机译:剪切可变形层压复合壳板在湿热环境中声学辐射响应的数值分析

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摘要

In this article, the vibroacoustic responses of laminated composite curved panels subjected to harmonic point excitation in a combined temperature and moisture environment are investigated numerically using a novel higher-order finite-boundary element model. The hygrothermal dependent composite material properties are incorporated macroscopically in the formulation. The governing equations are derived using the higher-order shear deformation shell theory coupled with finite and boundary element approach. First, the Hamilton's principle is employed to obtain the stiffness, mass tensors and modal values of the vibrating structure subjected to hygrothermal stresses. The acoustic radiation responses are then computed by solving the Helmholtz wave equation discretized on the structure boundary using boundary elements coupled with the structural finite elements. Compared to those reported in open literature, the results for natural frequencies, critical buckling temperature, critical buckling moisture and sound power level values computed using the present scheme are found to be more accurate. The sound power values are also acquired via a simulation model implemented using commercial tools ANSYS and LMS. Virtual Lab and compared with present numerical results. The scheme is further extended to solve numerous numerical examples highlighting the influence of hygrothermal loads, geometry, curvature ratio, modular ratio, support conditions and lamination scheme on the hygro-thermo-acoustic responses of laminated composite shell panels. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在本文中,使用新颖的高阶有限边界元模型在数值上进行了数值在数值上进行了数值在数值上进行了谐波点激发的层压复合弯曲面板的纵传响应。湿热依赖性复合材料特性在配方中宏观掺入。使用高阶剪切变形壳理论与有限和边界元接近耦合的高阶剪切变形壳理论来源。首先,采用汉密尔顿的原理获得对湿热应力进行振动结构的刚度,质量张量和模态值。然后,通过使用与结构有限元件耦合的边界元件求解在结构边界上离散化的亥姆霍兹波浪方程来计算声辐射响应。与开放文献中报告的那些相比,发现使用本方案计算的自然频率,关键屈曲温度,关键屈曲水分和声功率水平值的结果更准确。还通过使用商业工具ANSYS和LMS实现的模拟模型来获取声音功率值。虚拟实验室并与现有数值结果进行比较。进一步扩展了该方案以解决许多数值示例,突出了湿热载荷,几何,曲率比,模块化比,支撑条件和层压方案对层压复合壳板的Hygro-Thermo声反应的影响。 (c)2018年elestvier有限公司保留所有权利。

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