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An Image Based Computational Model to Predict Air Pumping Noise in Rolling Tires

机译:一种基于图像的计算模型,以预测滚动轮胎空气泵送噪声

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In this work we propose an image based computational model to predict noise produced in rolling tires attributable to the air pumping phenomenon. The model uses different pitch geometries as input parameters, and subsequently predicts the noise generated by treads in temporal and frequency domains. The method lends itself available to explore roles of different pitch parameters; specifically pitch sequence, pitch length, pitch width, pitch angle, vehicle speed, contact patch length, and tread compression; on the overall amplitude and spectrum of air pumping noise generated in a rolling tire. The model uses data embedded in pitch images to calculate the volume velocity as a function of time. This temporal function is subsequently processed to compute sound pressure level in dB and dB(A) units. Predictions from such a model are compared with available data. Sensitivity studies have also been conducted to explore the role of various tread parameters on tread noise generated by a rolling tire.
机译:在这项工作中,我们提出了一种基于图像的计算模型,以预测抵销空气泵送现象的滚动轮胎中产生的噪声。该模型使用不同的俯仰几何形状作为输入参数,随后预测时间和频域的胎面产生的噪声。该方法借助探索不同间距参数的角色;具体地俯仰序列,俯仰长度,俯仰宽度,俯仰角,车速,接触贴片长度和胎面压缩;轧制轮胎中产生的空气泵送噪声的总幅度和光谱。该模型使用俯仰图像中嵌入的数据来计算卷速度作为时间的函数。随后处理该时间功能以计算DB和DB(A)单元中的声压级。将这种模型的预测与可用数据进行比较。还进行了敏感性研究,以探讨各种胎面参数对由滚动轮胎产生的胎面噪声的作用。

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