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An ultra-weak method for acoustic fluid–solid interaction

机译:声-固相互作用的超弱方法

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We introduce the ultra-weak variational formulation (UWVF) for fluid–solid vibration problems. In particular, we consider the scattering of time-harmonic acoustic pressure waves from solid, elastic objects. The problem is modeled using a coupled system of the Helmholtz and Navier equations. The transmission conditions on the fluid–solid interface are represented in an impedance-type form after which we can employ the well known ultra-weak formulations for the Helmholtz and Navier equations. The UWVF approximation for both equations is computed using a superposition of propagating plane waves. A condition number based criterion is used to define the plane wave basis dimension for each element. As a model problem we investigate the scattering of sound from an infinite elastic cylinder immersed in a fluid. A comparison of the UWVF approximation with the analytical solution shows that the method provides a means for solving wave problems on relatively coarse meshes. However, particular care is needed when the method is used for problems at frequencies near the resonance frequencies of the fluid–solid system.
机译:我们介绍了用于流体-固体振动问题的超弱变分公式(UWVF)。特别是,我们考虑了来自固体弹性物体的时谐声压波的散射。使用Helmholtz和Navier方程的耦合系统对问题进行建模。流体-固体界面上的传输条件以阻抗类型的形式表示,此后,我们可以对Helmholtz和Navier方程采用众所周知的超弱公式。两个方程式的UWVF近似值是使用传播的平面波的叠加来计算的。基于条件数的标准用于定义每个元素的平面波基础尺寸。作为模型问题,我们研究了浸没在流体中的无限弹性圆柱体发出的声音的散射。将UWVF近似值与解析解进行比较表明,该方法提供了一种解决相对粗网格上的波浪问题的方法。但是,当该方法用于流固系统共振频率附近的问题时,需要格外小心。

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