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首页> 外文期刊>SAE International Journal of Passenger Cars - Mechanical Systems >Coupling CFD with Vibroacoustic FE Models for Vehicle Interior Low-Frequency Wind Noise Prediction
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Coupling CFD with Vibroacoustic FE Models for Vehicle Interior Low-Frequency Wind Noise Prediction

机译:CFD与振动声有限元模型耦合,用于车辆内部低频风噪声预测

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摘要

With the reduction of engine and road noise, wind has become an important source of interior noise when cruising at highway speed. The challenges of weight reduction, performance improvement and reduced development time call for stronger support of the development process by numerical methods. Computational Fluid Dynamics (CFD) and finite element (FE) vibroacoustic computations have reached a level of maturity that makes it possible and meaningful to combine these methods for wind noise prediction. This paper presents a method used for coupling time domain CFD computations with a finite element vibroacoustic model of a vehicle for the prediction of low-frequency wind noise below 500 Hz. The procedure is based on time segmentation of the excitation load and transformation into the frequency domain for the vibroacoustic computations. It requires simple signal processing and preserves the random character as well as the spatial correlation of the excitation signal. The aeroacoustic load is applied on the entire outer surface of the vehicle body. The computed results are validated against wind tunnel measurements on a production vehicle. The numerical and experimental investigations provide some insight into the mechanisms involved in underbody wind noise.
机译:随着发动机和道路噪音的降低,风速成为高速公路行驶时内部噪音的重要来源。减轻重量,提高性能和减少开发时间的挑战要求通过数值方法来为开发过程提供更强大的支持。计算流体力学(CFD)和有限元(FE)振动声学计算已经达到成熟水平,这使得将这些方法组合用于风噪声预测成为可能和有意义。本文提出了一种用于时域CFD计算与车辆有限元振动声学模型耦合的方法,用于预测500 Hz以下的低频风噪声。该程序基于激励负载的时间分段,并转换到频域以进行振动声计算。它需要简单的信号处理,并保留了激励信号的随机特性以及空间相关性。空气声载荷施加在车身的整个外表面上。针对生产车辆上的风洞测量结果验证了计算结果。数值和实验研究提供了一些有关车底风噪声的机理的见解。

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