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Finite-element based perturbation analysis of wave propagation in nonlinear periodic structures

机译:基于有限元的非线性周期结构中波传播的扰动分析

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Wave propagation in continuous, periodic structures subject to weak nonlinearities is studied using a finite-element discretization of a single unit cell followed by a perturbation analysis. The dispersion analysis is integrated with commercial finite-element analysis (FEA) software to expedite nonlinear analysis of geometrically-complex unit cells. A simple continuous multilayer system is used to illustrate the principle aspects of the procedure. A periodic structure formed by membrane elements on nonlinear elastic supports is used to demonstrate the versatility of the procedure. Weakly nonlinear band diagrams are generated in which amplitude-dependent band-gaps and group velocities are identified. The nonlinear dispersion analysis procedure described, coupled with commercial FEA software, should facilitate the study of wave propagation in a wide-variety of geometrically-complex, nonlinear periodic structures.
机译:使用单个单位单元的有限元离散化,然后进行扰动分析,研究了在连续,周期性结构中受弱非线性影响的波传播。色散分析与商业有限元分析(FEA)软件集成在一起,可加快几何复杂的晶胞的非线性分析。一个简单的连续多层系统用于说明该过程的原理。膜元件在非线性弹性支撑上形成的周期性结构用于证明该方法的多功能性。生成了弱非线性能带图,其中识别了幅度相关的能带隙和组速度。所描述的非线性色散分析程序与商业有限元分析软件相结合,应有助于研究各种几何复杂的非线性周期结构中的波传播。

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