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Transmission Loss Assessments of Sandwich Structures by Using a Combination of Finite Element and Boundary Element Methods

机译:有限元和边界元法相结合的三明治结构传递损失评估

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摘要

In this work, formulation of a 2D fully-coupled finite element method (FEM) / boundary element method (BEM) to simulate the measurements of sound transmission loss of sandwich panels is presented. Specifically, the structural behavior of the sandwich panels, based on a consistent higher-order theory, is implemented using finite element method (FEM), and the reverberant/anechoic chambers are accessed by the boundary element method (BEM). The coupling between the structure and the acoustic medium is achieved by assuming the continuity of the normal velocities at the interface. The absorption of the receiving anechoic chamber is calibrated by comparing the numerically-predicted sound pressure level difference between the two chambers with the Sewell’s expression for the forced transmission. The obtained correction factors are then used without any modification to predict transmission loss of other sandwich panels with different dimensions and material properties. Numerical examples are presented to validate the numerical procedure.
机译:在这项工作中,提出了一种二维全耦合有限元法(FEM)/边界元法(BEM)的公式化,以模拟夹心板传声损失的测量。具体而言,基于一致的高阶理论,使用有限元方法(FEM)实现夹层板的结构行为,并通过边界元方法(BEM)访问混响/回声室。通过假定界面处法向速度的连续性,可以实现结构与声学介质之间的耦合。通过将两个腔室之间的数值预测声压级差与强制传输的塞威尔表达式进行比较,可以校准接收消声室的吸收。然后将获得的校正因子直接使用,以预测具有不同尺寸和材料特性的其他夹芯板的传输损耗。数值例子验证了数值程序的有效性。

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