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A New Method of Characterizing Wind Noise Sources and Body Response for a Detailed Analysis of the Noise Transmission Mechanism

机译:一种对风噪声源和体响应进行详细分析的新方法,对噪声传输机构进行详细分析

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Interior noise caused by exterior air flow, or wind noise, is one of the noise-and-vibration phenomena for which a systematic simulation method has been desired for enabling their prediction. One of the main difficulties in simulating wind noise is that, unlike most other noises from the engine or road input, wind noise has not one but two different types of sources, namely, convective and acoustic ones. Therefore, in order to synthesize the interior sound pressure level (SPL), the body sensitivities (interior SPL/outer source level) for both types of sources have to be considered. In particular, sensitivity to the convective input has not been well understood, and hence it has not been determined. Moreover, the high-frequency nature of wind noise (e.g., the main energy range extends up to 4000 Hz) has limited the effective application of CAE for determining body sensitivities, for example, from the side window glass to the occupants’ ears.This paper presents a new approach to the analysis of wind noise which has been restricted by the intrinsic nature of the noise sources (i.e., a mixture of convective and acoustic components). To cope with this dual-input complexity, a new transmission model was built to treat noise sources characterized simply as “forces” impinging upon the body surfaces regardless of the type of source and noise transfer functions (NTFs) employed as body sensitivities to the forces. This model enables a quantitative synthesis of interior noise and also a contribution analysis of the sources and/or body sensitivities with high accuracy.
机译:由外部空气流量或风噪声引起的内部噪声是噪声和振动现象之一,其中需要一种系统仿真方法来实现预测。模拟风噪声的主要困难之一是,与来自发动机或道路输入的大多数其他噪声不同,风噪声不是两种不同类型的源,即对流和声学。因此,为了合成内部声压级(SPL),必须考虑两种类型源的身体敏感度(内部SPL /外源电平)。特别地,对对流输入的敏感性没有得到很好地理解,因此尚未确定。此外,风噪声的高频性质(例如,主能范围延伸至4000Hz)限制了CAE用于确定体敏度的有效应用,例如,从侧窗玻璃到乘员的耳朵。本纸张提出了一种新方法,用于分析风噪声,该方法受到噪声源的内在性质(即对流和声学组分的混合物)。为了应对这种双输入复杂性,建立了一种新的传输模型,以处理表征的噪声源,简单地作为撞击身体表面的“力”,而不管用作力量的身体敏感性的源和噪声传递函数(NTF) 。该模型能够高精度地实现内部噪声的定量合成,以及对源和/或身体敏感度的贡献分析。

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