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Wave finite element method for waveguides and periodic structures subjected to arbitrary loads

机译:波导的波浪有限元方法和经受任意载荷的周期性结构

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摘要

The wave finite element method has been developed for waveguides and periodic structures with advantages in the calculation time. However, this method cannot be applied easily if the structure is subjected to complex or density loads and this is the aim of this article. Based on the finite element method, the dynamic equation of one period of the structure is rewritten to obtain a relation between the responses (DOF and nodal loads) on the left and right boundaries. This relation presents an additive term which links to the loads applying on the period. Then, by using WFE technique, we can compute the wave modes of the period and the wave decomposition. Because of the periodicity, we can also obtain a relation between the response and the left and right ends of the structure. Afterwards, the responses of the structure are calculated by using the wave decomposition in the dynamic stiffness matrix (DSM) approach or the wave analysis (WA). For the DSM approach, this technique shows that the external loads have no contribution to the global matrix but they lead to an equivalent force in the dynamic equation. Meanwhile, the external loads create waves propagating to the left and right of the structure in the WA approach.
机译:已经开发了Wave有限元方法,用于波导和具有优点在计算时间的周期性结构。但是,如果结构受到复杂或密度负载,则不能容易地应用这种方法,这是本文的目的。基于有限元方法,重写结构的一个周期的动态方程,以获得左边和右边界的响应(DOF和Nodal负载)之间的关系。该关系提出了一种添加术语,其与在该期间施加的负载连接。然后,通过使用WFE技术,我们可以计算周期的波模式和波分解。由于周期性,我们还可以获得结构的响应与左端之间的关系。之后,通过使用动态刚度矩阵(DSM)方法或波分析(WA)中的波分解来计算结构的响应。对于DSM方法,该技术表明外部负载对全局矩阵没有贡献,但它们导致动态方程中的等效力。同时,外部负载在WA方法中产生传播到结构的左侧和右侧的波。

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