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Modal expansion of experimental vibration data for numerical acoustic radiation prediction

机译:实验振动数据的模态扩展,用于数值声辐射预测

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The prediction of the acoustic radiation of vibrating structures is traditionally based on the acoustic boundary element method. This approach leads to good predictions, provided that the dynamic behavior of the system is well known. This paper presents the integration of experimental vibration analysis with numerical acoustic radiation prediction. The developed methodology involves several steps: (i) measure the accelerations on the surface of a vibrating body, (ii) expand these experimental data onto a numerical model, using the modal information of a finite element model, and (iii) run a boundary element analysis to determine the acoustic radiated field. This procedure presents the advantages that the dynamic behavior is as accurately as possible defined and that the boundary element approach opens wide results interpretation (contribution and sensitivity analysis...). A real-life application example (car engine) is shown to illustrate and validate the developed methodology.
机译:传统上基于声学边界元法传统上的振动结构的声辐射的预测。如果系统的动态行为是众所周知的,这种方法导致了良好的预测。本文介绍了实验振动分析与数值声辐射预测的集成。开发方法涉及若干步骤:(i)使用有限元模型的模态信息,(ii)将这些实验数据扩展到数值模型的振动体上的加速度,(iii)运行边界元素分析确定声辐射场。此过程提出了动态行为尽可能准确地准确的优点,并且边界元方法打开广泛的结果解释(贡献和敏感性分析......)。实例应用示例(汽车发动机)被示出说明和验证开发的方法。

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