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Analytical modelling of sound transmission loss across finite clamped triple-wall sandwich panels in the presence of external mean flow

机译:在存在外部平均流的情况下,有限夹紧三层夹心板之间的传声损失的分析模型

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This paper analytically addresses the sound transmission loss (STL) performance of finite triple-wall sandwich panels lined with poroelastic materials and clamp mounted on an infinite rigid baffle in the presence of an external mean flow. The wave propagation in poroelastic media is addressed using Biot's theory. The coupling methods between the poroelastic core and facing plates are associated with different boundary conditions and various panel configurations. The Galerkin method and the modal superposition theory are used to deal with the clamped boundary conditions and finite extensions as well as to transfer the integral function to a matrix equation. The analytical model is verified by comparing to previous results of infinite triple-wall sandwich panels and finite triple-wall panels without poroleastic materials. The numerical results show that the triple-wall panels have superior STL to their double-wall counterparts due to the existence of an additional partition. The finite dimensions of the triple-wall sandwich panels with clamped boundary strongly influence the STL at low frequencies, and this effect is coupled with that of the external mean flow. The air layer plays a critical role in the sound insulation properties that vary among different panel configurations, and the configurations with two air layers exhibit the optimal overall sound insulation performance. (C) 2019 Elsevier Inc. All rights reserved.
机译:本文分析地分析了有限三层夹层板的声传输损耗(STL)性能,该夹层板衬有多孔弹性材料,并在存在外部平均流的情况下安装在无限刚性挡板上的夹具。波浪在多孔弹性介质中的传播用毕奥特理论解决。多孔弹性芯与面板之间的耦合方法与不同的边界条件和各种面板配置相关。 Galerkin方法和模态叠加理论用于处理边界条件和有限扩展,以及将积分函数转换为矩阵方程。通过与无限的三层夹层板和有限的三层夹层板而不使用含聚氨酯材料的先前结果进行比较,验证了该分析模型。数值结果表明,由于存在额外的隔板,三层墙板的STL优于双层墙板。具有夹固边界的三壁夹心板的有限尺寸在低频强烈影响STL,并且这种影响与外部平均流量的影响相关。空气层在不同面板配置之间的隔音性能中起着至关重要的作用,具有两个空气层的配置表现出最佳的整体隔音性能。 (C)2019 Elsevier Inc.保留所有权利。

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