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An experimental and computational investigation of air-borne noise generation mechanisms in tires

机译:轮胎空气传播噪声机制的实验与计算调查

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The complex nature of the tire/road noise generation process makes it difficult to isolate and study each mechanism individually. This paper presents an experimental and numerical investigation of air-borne tire noise generation mechanisms for a realistic tire. Experimentally, a single slot is cut into the tire and the noise data are measured and studied. Air-borne noise is isolated by filling the slot with foam and comparing the resulting frequency spectra. Numerically, a previously developed computational fluid dynamics tire noise prediction model is employed to predict the air-borne noise for the same tire, under similar operating conditions. A direct comparison between the experimental and computational results is also presented in terms of pressure time traces and spectral characteristics. Comparisons indicate that the computational model is capable of predicting the noise generated by the air pockets in the tire. While providing a deeper understanding of the causes of air-borne noise, this paper also aims to demonstrate the use of a computational tool that can be used to obtain a reasonably accurate prediction of air-borne tire noise.
机译:轮胎/道路噪音生成过程的复杂性使得难以分离和研究各种机制。本文介绍了逼真轮胎空气传承轮胎噪声机制的实验和数值研究。实验地,将单个槽切割成轮胎,并测量噪声数据并研究。通过用泡沫填充并比较所得到的频谱来隔离空气传播噪音。在数值上,采用先前开发的计算流体动力学轮胎噪声预测模型来预测相同的操作条件下的相同轮胎的空气传播噪声。实验和计算结果之间的直接比较也在压力时间迹线和光谱特性方面呈现。比较表明计算模型能够预测轮胎中的气穴产生的噪音。虽然提供了更深入的了解空气传播噪声的原因,但旨在证明使用可用于获得对空气传承噪声的合理预测的计算工具的使用。

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