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Predicting the Acoustics of Squeak and Rattle

机译:预测吱吱声和拨浪鼓的声学

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This paper discusses the development of a computationally efficient numerical method for predicting the acoustics of rattle events upfront in the design cycle. The method combines Finite Elements, Boundary Elements and SEA and enables the loudness of a large number of rattle events to be efficiently predicted across a broad frequency range. A low frequency random vibro-acoustic model is used in conjunction with various closed form analytical expressions in order to quickly predict impact probabilities and locations. An existing method has been extended to estimate the statistics of the contact forces across a broad frequency range. Finally, broadband acoustic radiation is predicted using standard low, mid and high frequency vibro-acoustic methods and used to estimate impact loudness. The approach is discussed and a number of validation examples are presented.
机译:本文讨论了在设计周期中预测拨浪鼓事件声学的计算有效数值方法的发展。该方法结合有限元,边界元件和海,并且能够在宽频率范围内有效地预测大量拨浪鼓事件的响度。低频随机振动声学模型与各种封闭的形式分析表达式一起使用,以便快速预测影响概率和位置。已经扩展了现有方法以估计跨越频率范围的接触力的统计数据。最后,使用标准低,中和高频振动声学方法预测宽带声辐射,并用于估计响应的影响。讨论该方法,并呈现了许多验证示例。

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