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Time-domain structural-acoustic analysis of composite plates subjected to moving dynamic loads

机译:动载荷作用下复合材料板的时域结构声学分析

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This paper is concerned with the numerical analysis of structural and acoustic behaviors of composite laminated plates under the action of moving loads. The plate is assumed to be immersed in a compressible inviscid fluid. The moving loads may traverse on the surface of the plate along arbitrarily-shaped curved trajectories. The structural model of the plate is formulated using a modified variational principle combined with a multilevel partitioning procedure (i.e., individual layer and layer segment). The exact 3-D theory of elasticity is employed for the structural modeling in order to accommodate the analysis of arbitrarily thick composite plates, and the displacement field of each layer segment is approximated by Chebyshev orthogonal polynomials. A time-domain boundary element method based on Kirchhoff integral formulation is adopted to couple with the structural model of the plate to evaluate the radiated sound pressure of the fluid. Assessment of the accuracy of the present method is made by comparing the solutions attained from the coupled finite element/boundary element method. The effects of the velocities and trajectories of the moving loads on the dynamic responses of composite sandwich plates as well as the far-field radiated sound are investigated. The modal contributions to the vibro-acoustic responses of the plates are also discussed.
机译:本文涉及的是在运动荷载作用下复合层合板的结构和声学特性的数值分析。假定该板浸没在可压缩的无粘性流体中。移动载荷可以沿着任意形状的弯曲轨迹在板的表面上移动。板的结构模型是使用改进的变分原理结合多级划分程序(即单个层和层段)制定的。精确的3-D弹性理论用于结构建模,以适应任意厚度的复合板的分析,并且每个层段的位移场都通过Chebyshev正交多项式来近似。采用基于基尔霍夫积分公式的时域边界元方法,结合板的结构模型,评价流体的辐射声压。通过比较从有限元/边界元耦合方法获得的解,可以评估本方法的准确性。研究了移动载荷的速度和轨迹对复合夹层板动力响应以及远场辐射声的影响。还讨论了模态对板的声学响应的贡献。

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