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A hybrid Finite Element-Transfer Matrix method for the modeling of vibroacoustic systems with attached noise control treatment

机译:一种混合有限元传递矩阵方法,用于抗噪声控制处理的纵传系统

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This paper is concerned with the development of a hybrid methodology to speed up finite element analysis in vibroacoustic applications. The approach aims at avoiding the finite element modeling of the noise control treatment, which is cumbersome from both computational (i.e. model size) and virtual prototyping (i.e. meshing) standpoints. A transfer matrix model is instead employed, allowing for a reduction of the computational burden and a substantial simplification of the multilayer modeling. The methodology relies on the assumption that the noise control treatment is flat, homogeneous and of infinite lateral extent (i.e. finite size effects are negligible). The latter hypothesis is justified by short wavelength and high dissipation. Under these circumstances, the surface impedance at the two ends of the laterally unbounded noise control treatment can be formally obtained starting from an integral formulation. Results prove that, generally speaking, the hybrid finite element-transfer matrix model can always capture the qualitative behavior of the vibroacoustic system. However, it is shown that, in some cases, finite size effects within the noise control treatment may be important. Hence, a correction is proposed to retrieve the missing performance.
机译:本文涉及开发混合方法,以加速蚕道应用中的有限元分析。该方法旨在避免噪声控制处理的有限元建模,这是从计算(即模型大小)和虚拟原型设计(即网上)的角度的麻烦。替代地使用传输矩阵模型,允许减少计算负担和大量简化多层建模。该方法依赖于假设噪声控制处理是平坦的,均匀的横向范围(即有限尺寸效应可以忽略不计)。后一假设通过短波长和高耗散是合理的。在这种情况下,可以从整体制剂开始正式地获得横向未染色的噪声控制处理的两端的表面阻抗。结果证明,一般而言,混合有限元传输矩阵模型可以始终捕获纵传系统的定性行为。然而,表明,在某些情况下,噪声控制处理内的有限尺寸效应可能是重要的。因此,提出了一种校正来检索缺失的性能。

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