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首页> 外文期刊>Journal of computational acoustics >On the Acoustic Radiation of Axisymmetric Fluid-Filled Pipes Using the Wave Finite Element (WFE) Method
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On the Acoustic Radiation of Axisymmetric Fluid-Filled Pipes Using the Wave Finite Element (WFE) Method

机译:波动有限元法研究轴对称充液管道的声辐射

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摘要

This paper investigates the efficiency of the wave finite element (WFE) method to assess the vibroacoustic behavior of finite baffled axisymmetric elastic pipes interacting with internal and external acoustic fluids. The pipes, of either homogeneous or multi-layered cross-sections, are surrounded by an external fluid of infinite extent, which can be light or heavy. The Sommerfeld radiation condition is taken into account by considering a perfectly matched layer (PML) around the external fluid. The method involves the computation of waves traveling along an axisymmetric multi-physics waveguide that incorporates a pipe, internal and external fluids, as well as a PML. Numerical experiments are carried out which highlight the relevance of the WFE method in terms of accuracy and CPU time savings, in comparison with the conventional finite element analysis.
机译:本文研究了波浪有限元(WFE)方法评估有限的带挡板的轴对称弹性管与内部和外部声学流体相互作用的振动声效率的效率。均质或多层横截面的管子都被无限轻或重的外部流体包围。通过考虑外部流体周围的完美匹配层(PML)来考虑Sommerfeld辐射条件。该方法涉及计算沿轴对称多物理波导传播的波,该波导包含管道,内部和外部流体以及PML。与常规有限元分析相比,进行了数值实验,突出了WFE方法在准确性和节省CPU时间方面的相关性。

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