首页> 外文期刊>Computational Mechanics: Solids, Fluids, Fracture Transport Phenomena and Variational Methods >A 2D Daubechies finite wavelet domain method for transient wave response analysis in shear deformable laminated composite plates
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A 2D Daubechies finite wavelet domain method for transient wave response analysis in shear deformable laminated composite plates

机译:2D Daubechies剪切可变形夹层复合板瞬态波响应分析的有限小波域方法

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摘要

An efficient numerical method is developed for the simulation of dynamic response and the prediction of the wave propagation in composite plate structures. The method is termed finite wavelet domain method and takes advantage of the outstanding properties of compactly supported 2D Daubechies wavelet scaling functions for the spatial interpolation of displacements in a finite domain of a plate structure. The development of the 2D wavelet element, based on the first order shear deformation laminated plate theory is described and equivalent stiffness, mass matrices and force vectors are calculated and synthesized in the wavelet domain. The transient response is predicted using the explicit central difference time integration scheme. Numerical results for the simulation of wave propagation in isotropic, quasi-isotropic and cross-ply laminated plates are presented and demonstrate the high spatial convergence and problem size reduction obtained by the present method.
机译:开发了一种有效的数值方法,用于模拟动态响应和复合板结构中波传播的预测。 该方法被称为有限小波域方法,利用紧凑型支撑的2D Daubechies小波缩放功能的优异特性,用于板结构的有限域中位移的空间内插。 基于第一阶剪切变形层叠板理论的2D小波元件的发展和等效刚度,质量矩阵和力矢量在小波结构域中计算和合成。 使用显式中央差分时间集成方案来预测瞬态响应。 提出了通过本方法获得的各向同性,准 - 各向同性和交叉层层压板中波传播模拟的数值结果,并证明了通过本方法获得的高空间收敛性和问题尺寸。

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