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NUMERICAL MODELING AND APPROXIMATION OF THE COUPLING LAMB WAVE PROPAGATION WITH FLUID-STRUCTURE INTERACTION PROBLEM

机译:流固耦合问题的耦合兰姆波传播的数值模拟与逼近

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So far, mathematical modelling of Lamb wave propagation under fluid-structure interaction (FSI) was limited to the case of rigid structure. We extend this concept to account for structural dynamics. Thereby, we provide a model that is suitable for the structural health monitoring (SHM) during the operation of the structure. The model we develop is referred to as the "extended Fluid-Structure Interaction" (eXFSI) problem, which is a one-directional coupling of typical FSI problem with an ultrasonic wave propagation in fluid-solid and their interface (WpFSI). Here, the strongly coupled problem of acoustic & elastic wave equations is denoted by WpFSI. Next, we explore the approach to the efficient numerical solution of the problem. We use a combination of Finite Element and Finite Difference methods and employ a dual-loop algorithm to balance the computational cost and quality of the numerical solution. To facilitate our solution algorithm, we rely upon the software library package DOpElib.
机译:到目前为止,在流体-结构相互作用(FSI)下的兰姆波传播的数学模型仅限于刚性结构的情况。我们将此概念扩展为考虑结构动力学。因此,我们提供了一种适用于结构运行期间结构健康监测(SHM)的模型。我们开发的模型称为“扩展的流固耦合”(eXFSI)问题,它是典型FSI问题与超声波在流固及其界面中传播的单向耦合(WpFSI)。此处,声波和弹性波方程的强耦合问题用WpFSI表示。接下来,我们探索解决问题的有效数值方法。我们结合使用有限元法和有限差分法,并采用双回路算法来平衡数值解的计算成本和质量。为了简化我们的解决方案算法,我们依赖于软件包DOpElib。

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