Isogeometric analysis (IGA) has proven to be an improvement on the classical finite element method (FEM) in several fields, including structural mechanics and fluid dynamics. In this paper, the performance of IGA coupled with the infinite element method (IEM) for some acoustic scattering problems is investigated. In particular, the simple problem of acoustic scattering by a rigid sphere, and the scattering of acoustic waves by an elastic spherical shell with fluid domains both inside and outside, representing a full acoustic-structure interaction (ASI) problem. Finally, a mock shell and a simplified submarine benchmark are investigated. The numerical examples include comparisons between IGA and the FEM. Our main finding is that the usage of IGA significantly increases the accuracy compared to the usage of $C^0$ FEM due to increased inter-element continuity of the spline basis functions.
翻译:事实证明,在包括结构力学和流体动力学在内的若干领域,对古典有限元素方法(FEM)进行了改进。在本文件中,对IGA的性能以及一些声学散射问题的无限元素方法(IEM)进行了调查,特别是:声学通过硬球体散布的简单问题,以及由带弹性球外壳和流体外体散射的声波问题,代表了完全的声学-结构互动问题。最后,对模拟贝壳和简化的海底基准进行了调查,其中包括IGA和FEM之间的比较。我们的主要结论是,由于样基功能的内涵连续性增强,IGA的用法大大提高了精确度。