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A COUPLED BEM AND ENERGY FLOW METHOD FOR MID-HIGH FREQUENCY INTERNAL ACOUSTIC

机译:高中频内部声学的边界元与能量流耦合方法

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This paper deals with the behavior of acoustic cavities in the mid-high frequency range. The method proposed here is based on an energy flow method named Simplified Energy Method (MES). MES method is quite efficient in the mid-high frequency range but the directivity of the boundary sources is not well estimated. We propose a hybrid method which couples MES and the Boundary Element Method (BEM). Thus, the BEM method is used to estimate the direct field, considering a "correct" directivity. As a complete calculation is not adapted to BEM in mid-high frequency range because of the calculation costs, we only apply BEM on the domains including boundary sources. Other parts of the system and the reverberated field are estimated by the mean of MES method. This hybrid method leads to a consistent prediction of injected power densities. Numerical comparisons prove the efficiency of the proposed reformulation.
机译:本文讨论了中高频范围内的声腔行为。此处提出的方法基于名为简化能量法(MES)的能量流方法。 MES方法在中高频范围内非常有效,但边界源的方向性尚不能很好地估计。我们提出了一种混合方法,将MES和边界元方法(BEM)结合在一起。因此,考虑到“正确的”方向性,使用BEM方法估计直接场。由于出于计算成本的原因,完整的计算不适用于中高频的BEM,因此我们仅将BEM应用于包括边界源在内的域。系统的其他部分和混响场通过MES方法进行估计。这种混合方法导致对注入功率密度的一致预测。数值比较证明了所提出的公式的有效性。

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