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Fluid-structure interaction of an elastic pipe immersed inside a coaxial rigid pipe: a model for the Tullio phenomenon

机译:浸入同轴刚性管内的弹性管的流固耦合:Tullio现象的模型

摘要

An axisymmetric, elastic pipe is filled with an incompressible fluid and is immersed in a second, coaxial rigid pipe which contains the same fluid. A pressure pulse in the outer fluid annulus deforms the elastic pipe which invokes a fluid motion in the fluid core. It is the aim of this study to investigate streaming phenomena in the core which may originate from such a fluid-structure interaction. This work presents a numerical solver for such a configuration. It was developed in the OpenFOAM software environment and is based on the Arbitrary Lagrangian Eulerian (ALE) approach for moving meshes. The solver features a monolithic integration of the one-dimensional, coupled system between the elastic structure and the outer fluid annulus into a dynamic boundary condition for the moving surface of the fluid core. Results indicate that our configuration may serve as a mechanical model of the Tullio Phenomenon (sound-induced vertigo).
机译:轴对称的弹性管充满不可压缩的流体,并浸入包含相同流体的第二根同轴刚性管中。外部流体环带中的压力脉冲使弹性管变形,从而引起流体芯中的流体运动。这项研究的目的是研究岩心中的流现象,这种现象可能源于这种流固耦合。这项工作提出了用于这种配置的数值求解器。它是在OpenFOAM软件环境中开发的,并且基于用于移动网格的任意拉格朗日欧拉(ALE)方法。该求解器的特征是将弹性结构和外部流体环之间的一维耦合系统整体集成为流体核心运动表面的动态边界条件。结果表明,我们的配置可作为Tullio现象(声音诱发的眩晕)的力学模型。

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