论文标题

使用一维半分析有限元方法,在多层固体球中强制振动和波传播

Forced vibrations and wave propagation in multilayered solid spheres using a one-dimensional semi-analytical finite element method

论文作者

Gallezot, Matthieu, Treyssède, Fabien, Abraham, Odile

论文摘要

提出了一个数值模型来计算本征模和多层弹性球的强制响应。主要思想是分析用球形谐波沿角坐标的问题描述问题,并用一维有限元元素离散径向方向。必须仔细选择适当的测试功能,以便可以使用向量和张量球形谐波正交关系。提出的方法产生了一般的一维公式,并对角度行为进行了完全分析的描述,适用于任何插值技术。然后获得了简单而快速解决的线性特征值问题。特征是球形和扭转模式。它们与均匀领域的文献结果相比,它们相比有利。征量已超级措施以明确计算强制响应。后者用于重建表面波的传播。特别是,通过模型恢复了均质源的雷利波(非裂开的表面波传播的非裂开的表面波)被均匀球中的线源激发的准直。基于振动本征模,模态分析表明,这种波是基本球体模式的叠加,其位移限制在球体的赤道处。这些模式是所谓的瑞利模式,具有部门类型和高极波数。当将薄的粘弹性涂层添加到球体中时,雷利模式的行为将在有限的频率范围内回收,从而使球体和涂层之间的界面上的准直波产生。

A numerical model is proposed to compute the eigenmodes and the forced response of multilayered elastic spheres. The main idea is to describe analytically the problem along the angular coordinates with spherical harmonics and to discretize the radial direction with one-dimensional finite elements. The proper test function must be carefully chosen so that both vector and tensor spherical harmonics orthogonality relationships can be used. The proposed approach yields a general one-dimensional formulation with a fully analytical description of the angular behaviour, suitable for any interpolating technique. A linear eigenvalue problem, simple and fast to solve, is then obtained. The eigensolutions are the spheroidal and torsional modes. They are favourably compared with literature results for a homogeneous sphere. The eigensolutions are superposed to compute explicitly the forced response. The latter is used to reconstruct the propagation of surfaces waves. In particular, the collimation of a Rayleigh wave (non-diffracted surface wave propagating with a quasi-constant width) excited by a line source in a homogeneous sphere is recovered with the model. Based on the vibration eigenmodes, a modal analysis shows that such a wave is a superposition of fundamental spheroidal modes with a displacement confined at the equator of the sphere. These modes are the so-called Rayleigh modes, of sectoral type and high polar wavenumbers. When a thin viscoelastic coating is added to the sphere, the Rayleigh mode behaviour is recovered in a limited frequency range, allowing the generation of a collimating wave at the interface between the sphere and the coating.

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