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Formulation and validation of the shift cell technique for acoustic applications of poro-elastic materials described by the Biot theory

机译:Biot理论描述的浮子弹性材料声学应用的移位细胞技术的制定和验证

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摘要

The inclusion of vibroacoustic treatments at early stage of product development through the use of poro-elastic media with periodic inclusions, which exhibit proper dynamic filtering effects, is a powerful strategy for the achievement of lightweight sound packages and represents a convenient solution for manufacturing aspects. This can have different applications in transportation (aerospace, automotive, railway), energy and civil engineering fields, where weight, space and vibroacoustic comfort are still critical challenges. This paper develops the shift cell operator approach as a numerical tool to investigate the dispersion characteristics of periodic poro-elastic media. It belongs to the class of the k(ω) (wave number as a function of the angular frequency) methods and leads to a quadratic eigenvalue problem, even when considering frequency-dependent materials, contrarily to the ω(k) approach that would lead to a non-linear eigenvalue problem for frequency-dependent materials. The full formulation is detailed and the approach is successfully validate for a homogeneous poro-elastic material and a more complex periodic system containing periodic perfectly rigid circular inclusions.
机译:通过使用具有定期夹杂物的Poro-Elastic介质在产品开发的早期阶段包含纵曲的处理,该介质具有适当的动态滤波效果,是实现轻量级声音封装的强大策略,代表了制造方面的方便解决方案。这可以在运输(航空航天,汽车,铁路),能量和土木工程领域具有不同的应用,其中重量,空间和纵传舒适性仍然是危急挑战。本文开发了换档电池操作员方法作为研究周期浮游介质的分散特性的数值工具。它属于K(ω)的类(作为角度频率的函数的波数)方法,并导致二次特征值问题,即使在考虑频率依赖性材料时,也相反地与将导致的Ω(k)方法频率依赖材料的非线性特征值问题。详细说明了完整的配方,并且该方法成功验证了均匀的浮孔弹性材料和更复杂的周期性系统,其含有周期性完全刚性的圆形夹杂物。

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  • 来源
    《Mechanical systems and signal processing》 |2021年第1期|107089.1-107089.11|共11页
  • 作者单位

    FEMTO-ST Institute/Dep. of Applied Mechanics Univ. Bourgogne Franche-Comte CNRS/UFC/ENSMM/UTBM Besancon 25000 France Dep. of Industrial Engineering Universita di Napoli 'Federico Ⅱ' Corso Umbeno I 40 Napoli 80138 Italy;

    KU Leuven Department of Mechanical Engineering Division LMSD Celestijnenlaan 300 2420 Heverlee Belgium DMMS Lab Flanders Make 2420 Heverlee Belgium;

    FEMTO-ST Institute/Dep. of Applied Mechanics Univ. Bourgogne Franche-Comte CNRS/UFC/ENSMM/UTBM Besancon 25000 France;

    KU Leuven Campus Diepenbeek Department of Mechanical Engineering Wetenschapspark 27 3590 Diepenbeek Belgium DMMS Lab Flanders Make 2420 Heverlee Belgium;

    Dep. of Industrial Engineering Universita di Napoli 'Federico Ⅱ' Corso Umbeno I 40 Napoli 80138 Italy;

    KU Leuven Department of Mechanical Engineering Division LMSD Celestijnenlaan 300 2420 Heverlee Belgium DMMS Lab Flanders Make 2420 Heverlee Belgium;

    Dep. of Industrial Engineering Universita di Napoli 'Federico Ⅱ' Corso Umbeno I 40 Napoli 80138 Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Vibroacoustics; Biot theory of poro-elasticity; Shift cell; FEM; Dispersion diagram;

    机译:v声学;Poro-弹性的BIOS理论;移位细胞;FEM;分散图;

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