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Modelling Process and Validation of Hybrid FE-SEA Method to Structure-Borne Noise Paths in a Trimmed Automotive Vehicle

机译:混合Fe-Sea方法在修剪汽车车辆中结构噪声路径的建模过程与验证

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The Finite Element Method (FEM) and the Statistical Energy Analysis (SEA) are standard methods in the automotive industry for the prediction of vibrational and acoustical response of vehicles. However, both methods are not capable of handling the so-called "mid frequency problem", where both short and long wavelength components are present in the same system. A Hybrid method has been recently proposed that rigorously couples SEA and FEM. In this work, the Hybrid FE-SEA method is used to predict interior noise levels in a trimmed full vehicle due to broadband structure-borne excitation from 200 Hz to 1000 Hz. The process includes the partitioning of the full vehicle into stiff components described with FE and modally dense components described with SEA. It is also demonstrated how detailed local FE models can be used to improve SEA descriptions of car panels and couplings. After review of the Hybrid FE-SEA models of a full vehicle that were built, sample experimental validation results of interior SPL and panel vibration are shown.
机译:有限元方法(FEM)和统计能量分析(SEA)是汽车行业的标准方法,用于预测车辆的振动和声学响应。然而,两种方法都不能处理所谓的“中频问题”,其中短和长波长分量都存在于同一系统中。最近提出了一种杂交方法,使海洋和有限元严格地耦合。在这项工作中,由于200Hz至1000Hz的宽带结构励磁,混合Fe-Sea方法用于预测修剪的全车辆中的内部噪声水平。该方法包括将全车辆分隔成用海的Fe和模式致密组分描述的硬质组分。还证明了本地FE模型的详细信息如何用于改善汽车面板和联轴器的海洋描述。在审查建造的全车辆的混合Fe-Sea模型后,示出了内部SPL和面板振动的样本实验验证结果。

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