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首页> 外文期刊>Acta acustica united with acustica >Applications of the mortar finite element method in vibroacoustics and flow induced noise computations
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Applications of the mortar finite element method in vibroacoustics and flow induced noise computations

机译:砂浆有限元法在振动声学和流致噪声计算中的应用

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The Mortar Finite Element Method allows the coupling of two or more sub-domains with quite different mesh sizes. We exploit this capability and apply it to real engineering applications in vibroacoustics and aeroacustics. Therewith, we gain the flexibility to choose for each sub-domain an optimal grid. At the nonconforming interfaces appropriate coupling conditions ensure that the physical constraints are captured accurately. With this enhanced method we can couple along the interface the mechanical with the acoustic field as in the case of vibroacoustics and furthermore, we can also couple the same physical field, e.g. acoustics, computed on different grids. The applications will clearly demonstrate the superiority of the Mortar Finite Element Method over the standard Finite Element Method both concerning the flexibility for the mesh generation as well as the computational time.
机译:砂浆有限元方法允许耦合两个或多个具有完全不同的网格大小的子域。我们利用此功能并将其应用于振动声学和航空声学的实际工程应用中。因此,我们获得了为每个子域选择最佳网格的灵活性。在不合格的接口处,适当的耦合条件可确保准确捕获物理约束。通过这种增强的方法,我们可以像振动声学一样沿界面将机械场与声场耦合,此外,我们还可以耦合相同的物理场,例如振动场。声学,在不同的网格上计算。这些应用程序将清楚地证明,砂浆有限元方法相对于标准有限元方法在网格生成的灵活性以及计算时间方面均具有优势。

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