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首页> 外文期刊>The Journal of the Acoustical Society of America >A hybrid finite element-transfer matrix model for vibroacoustic systems with flat and homogeneous acoustic treatments
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A hybrid finite element-transfer matrix model for vibroacoustic systems with flat and homogeneous acoustic treatments

机译:具有平面和均质声学处理的振动声学系统的混合有限元传递矩阵模型

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摘要

Practical vibroacoustic systems involve passive acoustic treatments consisting of highly dissipative media such as poroelastic materials. The numerical modeling of such systems at low to mid frequencies typically relies on substructuring methodologies based on finite element models. Namely, the master subsystems (i.e., structural and acoustic domains) are described by a finite set of uncoupled modes, whereas condensation procedures are typically preferred for the acoustic treatments. However, although accurate, such methodology is computationally expensive when real life applications are considered. A potential reduction of the computational burden could be obtained by approximating the effect of the acoustic treatment on the master subsystems without introducing physical degrees of freedom. To do that, the treatment has to be assumed homogeneous, flat, and of infinite lateral extent. Under these hypotheses, simple analytical tools like the transfer matrix method can be employed. In this paper, a hybrid finite element-transfer matrix methodology is proposed. The impact of the limiting assumptions inherent within the analytical framework are assessed for the case of plate-cavity systems involving flat and homogeneous acoustic treatments. The results prove that the hybrid model can capture the qualitative behavior of the vibroacoustic system while reducing the computational effort. (C) 2015 Acoustical Society of America.
机译:实际的振动声学系统涉及由高耗散介质(例如多孔弹性材料)构成的被动声学处理。此类系统在中低频的数值建模通常依赖于基于有限元模型的子构造方法。即,主子系统(即,结构域和声学域)由有限的一组非耦合模式来描述,而对于声学处理,通常优选冷凝程序。然而,尽管准确,但是当考虑现实生活中的应用时,这种方法在计算上是昂贵的。在不引入物理自由度的情况下,可以通过近似声学处理对主子系统的影响来潜在地减少计算负担。为此,必须假定处理均匀,平坦且横向范围无限。在这些假设下,可以使用简单的分析工具,例如转移矩阵法。本文提出了一种混合有限元传递矩阵方法。对于涉及平面和均质声学处理的板腔系统,评估了分析框架中固有的有限假设的影响。结果证明,该混合模型可以捕获振动声学系统的定性行为,同时减少了计算量。 (C)2015年美国声学学会。

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