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Sound Transmission Through Multilayered Cylinders Using A Transfer Matrix Method

机译:使用传输矩阵法通过多层汽缸进行声音传输

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This paper concerns the use of a Transfer Matrix (TM) method for predicting the acoustic behavior of infinite cylinders consisting of a generic arrangement of homogeneous and possibly periodic layers. In such a framework, a TM representation for media characterized by cylindrical periodicity is presented. A through-radius TM is derived for a periodic layer by manipulating the dynamic stiffness matrix related to a finite element model of a unit cell. The proposed technique is equally appealing for homogeneous layers since few elements are needed in this case. The obtained TM can be used to combine the periodic medium with layers of different nature. The global TM is then used to calculate the response of the structure to excitation. Acoustic radiation or transmission due to arbitrary internal or external excitation can be assessed and both resonant and non-resonant internal fluid conditions can be treated. Predictions with the proposed approach for cylinders consisting of homogeneous layers are compared to results presented in the literature. In order to demonstrate the usefulness of the approach the sound transmission through a cylindrical structure constructed from a heterogeneous periodic unit is also presented.
机译:本文涉及使用转移矩阵(TM)方法来预测由均匀和可能周期层的通用布置组成的无限汽缸的声学行为。在这样的框架中,呈现了一种用于圆柱周期性的介质的TM表示。通过操纵与单元小区的有限元模型相关的动态刚度矩阵来导出通径TM。由于在这种情况下,所提出的技术同样对均匀层吸引均匀层。所获得的TM可用于将周期性介质与不同性质的层组合。然后使用全局TM来计算结构响应刺激。可以评估由于任意内部或外部激发引起的声学辐射或透射,并且可以处理共振和非共振内部流体条件。将具有由均匀层组成的圆柱体方法的预测与文献中的结果进行比较。为了证明方法的用途,还呈现来自由异构周期性单元构成的圆柱形结构的声音传输。

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