Hebaz Salah-Eddine, Benmeddour Farouk, Moulin Emmanuel, Assaad Jamal
Univ. Valenciennes, CNRS, Univ. Lille, YNCREA, Centrale Lille, UMR 8520-IEMN, DOAE, F-59313 Valenciennes, France.
J Acoust Soc Am. 2018 Jan;143(1):460. doi: 10.1121/1.5021588.
The development of reliable guided waves inspection systems is conditioned by an accurate knowledge of their dispersive properties. The semi-analytical finite element method has been proven to be very practical for modeling wave propagation in arbitrary cross-section waveguides. However, when it comes to computations on complex geometries to a given accuracy, it still has a major drawback: the high consumption of resources. Recently, discontinuous Galerkin finite element method (DG-FEM) has been found advantageous over the standard finite element method when applied as well in the frequency domain. In this work, a high-order method for the computation of Lamb mode characteristics in plates is proposed. The problem is discretised using a class of DG-FEM, namely, the interior penalty methods family. The analytical validation is performed through the homogeneous isotropic case with traction-free boundary conditions. Afterwards, functionally graded material plates are analysed and a numerical example is presented. It was found that the obtained results are in good agreement with those found in the literature.
可靠的导波检测系统的发展取决于对其色散特性的准确了解。半解析有限元法已被证明在模拟任意横截面波导中的波传播方面非常实用。然而,在对复杂几何形状进行给定精度的计算时,它仍然存在一个主要缺点:资源消耗高。最近,间断伽辽金有限元法(DG-FEM)在频域中应用时,已被发现比标准有限元法更具优势。在这项工作中,提出了一种用于计算板中兰姆波模式特性的高阶方法。该问题使用一类DG-FEM(即内部罚函数法族)进行离散化。通过具有无牵引边界条件的均匀各向同性情况进行解析验证。之后,对功能梯度材料板进行分析并给出一个数值示例。结果发现,所获得的结果与文献中的结果非常吻合。