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On static analysis of finite repetitive structures by discrete Fourier transform

机译:基于离散傅立叶变换的有限重复结构静力分析

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摘要

Functional solutions for the static response of beam- and plate-like repetitive lattice structures are obtained by discrete Fourier transform. The governing equation is set up as a single operator form with the physical stiffness operator acting as a convolution sum and containing a matrix kernel, which relates to the mechanical properties of the lattice. Boundary conditions do not affect the equation form, and are taken into account at a subsequent stage of the analysis. The technique of virtual load and substructure is proposed to formally close the repetitive lattice into a cyclic structure, and to assure the equivalence of responses of the modified cyclic and original repetitive lattices. A discrete periodic Green's function is introduced for the modified structure, and the final displacement solutions are written as convolution sums over the Green's function and the actual external and virtual loads. Several example problems illustrate the approach.
机译:通过离散傅里叶变换获得梁和板状重复晶格结构静态响应的函数解。控制方程设置为单个算子形式,物理刚度算子充当卷积和并包含矩阵核,该矩阵核与晶格的机械特性有关。边界条件不影响方程式,并且在分析的后续阶段将其考虑在内。提出了虚拟载荷和子结构技术,以将重复晶格正式封闭为循环结构,并确保修改后的循环晶格和原始重复晶格的响应相等。修改后的结构引入了离散的周期格林函数,最终位移解写为格林函数以及实际外部和虚拟载荷的卷积和。几个示例问题说明了该方法。

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