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Challenges for Tire Noise Evaluation on Common Pavements

机译:普通路面轮胎噪声评估的挑战

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Developing common methods of noise evaluation and facilities can present a number of challenges in the area of tire/pavement noise. Some of the issues involved include the design and construction of pavements globally, the change in pavement over time, and variation in the noise produced with standard test tires used as references. To help understand and address these issues for airborne tire/pavement noise, acoustic intensity measurement methods based on the On-board Sound Intensity (OBSI) technique have been used. Initial evaluations have included measurements conducted at several different proving grounds. Also included were measurements taken on a 3m diameter tire noise dynamometer with surfaces replicating test track pavements. Variation between facilities appears to be a function of both design/construction and pavement age. Consistent with trends in the literature, for smooth asphalt surfaces, the newest surface produced levels lower than older surfaces. For more aggressive, exposed aggregate concrete surfaces, the levels produced appear to depend more on the roughness built into the surface rather than aging effects. The tire noise dynamometer produced overall levels slightly higher than the actual pavements especially at higher frequencies. The long term stability and durability of the dynamometer surface make it a useful reference for evaluating the actual pavements over time.
机译:开发常见的噪声评估方法和设施可以在轮胎/路面噪声领域提出许多挑战。涉及的一些问题包括全球人行道的设计和施工,随着时间的推移,路面的变化以及用标准测试轮胎产生的噪声的变化用作参考。为了帮助理解和解决空中轮胎/路面噪声的这些问题,使用了基于板载声强(Obsi)技术的声学强度测量方法。初始评估包括在几种不同的证明场所进行的测量。还包括在3米直径轮胎噪声测功机上进行的测量,带表面复制测试轨道路面。设施之间的变化似乎是设计/建筑和路面年龄的函数。符合文献中的趋势,对于光滑的沥青表面,最新的表面产生的水平低于旧表面。对于更具侵略性的,暴露的聚集体混凝土表面,所产生的水平似乎依赖于内置于表面而不是老化效果的粗糙度。轮胎噪声测功机产生的整体水平略高于实际路面,特别是在较高频率下。测力计表面的长期稳定性和耐久性使其成为评估实际路面随着时间的推移的有用参考。

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