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Modal acoustic transfer vector approach in a FEM-BEM vibro-acoustic analysis

机译:FEM-BEM振动声分析中的模态声传递矢量方法

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The aim of the present work is to set up an integrated approach for an automobile vibro-acoustic analysis, useful to assess, visualise and compare vibro-acoustic performance to pre-determined design targets, while identifying and quantifying the forces and sound sources responsible for the current behaviour. Such design approach, based on experimental and numerical procedures, enables the prediction of noise emissions and the correlation with the structural vibration source. Vibro-acoustic prediction in the low- to mid-frequency range is generally performed through finite element method (FEM) or boundary element method (BEM) but in this work a combined usage of the two methodologies is adopted: FEM is used for the structural dynamics and BEM for the acoustic problem resolution. The BE methodology adopted is based on an indirect formulation and on a variational solution scheme. The adopted FEM-BEM approach takes advantage of the Modal Acoustic Transfer Vector algorithm that is particularly useful when big problems are to be analysed. The comparison between numerical and experimental results enables an assessment of the accuracy level.
机译:本工作的目的是建立一种用于汽车振动声学分析的综合方法,该方法可用于评估,可视化和比较振动声学性能与预定的设计目标,同时识别和量化引起振动的力和声源。当前的行为。这种基于实验和数值程序的设计方法可以预测噪声排放以及与结构振动源的相关性。在低频到中频范围内的振动声预测通常是通过有限元法(FEM)或边界元法(BEM)进行的,但在这项工作中,两种方法的结合使用:FEM用于结构动力学和BEM解决声学问题。采用的BE方法基于间接公式和变分方案。所采用的FEM-BEM方法利用了模态声学传递矢量算法,该算法在分析大问题时特别有用。数值和实验结果之间的比较可以评估准确性水平。

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