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An Efficient Modeling Approach for Mid-frequency Trim Effects

机译:中频修剪效果有效的建模方法

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In traditional FE based structure-borne noise analysis, interior trims are normally modeled as lump masses in the FE structure model and acoustic specific impedance of the trim is assigned to the FE acoustics model when necessary. This simplification has proven to be effective and sufficient for low frequency analysis. However, as the frequency goes into the mid-frequency range, the elastic behavior of the trim may impose some effects on the structural and acoustic responses. The approach described in this paper is based on the structural FE and acoustic SEA coupling analysis developed by ESI, aiming to improve the modeling efficiency for a possible quick turnaround in virtual assessments. The idea is to reassemble the FE-SEA hybrid analysis results for the trimmed condition by combining radiated sound power from untrimmed body structure with trim component absorption, insertion loss data and other necessary information which can be extracted easily and quickly from an untrimmed FE model, and/or SEA model.
机译:在传统的Fe基结构传播噪声分析中,内饰通常是在Fe结构模型中的块块,并且在必要时将装饰的声学特定阻抗分配给FE声学模型。这种简化已被证明是有效且足以用于低频分析。然而,随着频率进入中间频率范围,装饰的弹性行为可能对结构和声反应施加一些影响。本文描述的方法基于ESI开发的结构FE和声学海洋耦合分析,旨在提高虚拟评估中可能的快速转变的建模效率。该思想是通过用修剪组件吸收,插入损耗数据和其他必要信息组合来自未经限制的身体结构的辐射声功率来重新组装修整条件的Fe-Sea混合分析结果。可以从未从未从未过时且快速地从未过时的FE模型提取,和/或海模型。

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