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Monitoring road surfaces by close proximity noise of the tire/road interaction

机译:通过轮胎/道路相互作用的近距离噪声监控路面

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Applied acoustics is becoming an important field for civil infrastructure and environmental assessment, and road maintenance or rehabilitation strategies. In this research LA(2)IC has developed a GPS-based measurement techniques and apparatus on a test vehicle, for monitoring the acoustical properties of different road pavement surfaces with a reference tire. A field test on PA-12 Spanish porous pavement found in Ciudad Real is developed. The test procedure, a modification based upon the close-proximity method (CPX), relies on the use of three standard microphones situated very close to the tire/road contact patch. This procedure allows the simultaneous measurement of the sound emission synchronized to a GPS receiver, which permits tracking of the position of the sound emission. Geo-referenced sound spectra for every 10 m during individual passes of the test vehicle are analyzed to determine the tire/road noise emissions from tire/PA-12 pavement interaction. Noise levels of around 102 dB(A), with a variability of approximately 0.6 dB(A), are found at a reference vehicle speed of 85 km/h. The frequency spectrum analysis over the test section shows noticeable differences for frequencies above 1 kHz, where the tire/road noise generation mechanisms are dominated by air pumping. (c) 2007 Acoustical Society of America.
机译:应用声学正在成为民用基础设施和环境评估以及道路维护或修复策略的重要领域。在这项研究中,LA(2)IC开发了一种基于GPS的测试车辆上的测量技术和设备,用于监测带有参考轮胎的不同路面的声学特性。开发了在雷阿尔城发现的PA-12西班牙多孔路面的现场测试。测试程序是基于近距离方法(CPX)的修改,它依赖于三个非常靠近轮胎/道路接触贴片的标准麦克风的使用。此过程允许同步测量与GPS接收器同步的声音发射,从而可以跟踪声音发射的位置。分析测试车辆每次通过期间每10 m的地理参考声谱,以确定来自轮胎/ PA-12路面相互作用的轮胎/道路噪声排放。在85 km / h的参考车速下,发现噪声水平约为102 dB(A),而其可变性约为0.6 dB(A)。测试部分的频谱分析显示,对于高于1 kHz的频率,存在明显的差异,其中轮胎/道路噪声的产生机制主要由气泵控制。 (c)2007年美国声学学会。

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