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Study of Tire-Pavement Noise Generation Mechanism using a Two-Wheeler

机译:两轮轮胎轮胎路面噪声产生机理的研究

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The major objective of this study was to understand and quantify the interaction of tire-pavement noise when a two-wheeler traversed along different types of pavement sections. This involved designing a fixture to record the noise at source based on the On-Board Sound Intensity (OBSI)-like method, which was mounted on to a two-wheeler. Field noise measurements were recorded on asphalt and cement concrete pavements for varying speeds. The spectral analysis of tire-pavement noise collected by the setup displayed the influence of tread impact to be one of the major sources of noise generation. The first peak frequency in the spectral region, where the tire-pavement noise was dominant was found to be proportional to velocity of the vehicle and distance between the adjacent treads. In addition, harmonics proportional to the peak frequency were also observed in both types of pavement sections. The influence of pavement texture as a noise source appeared to exhibit a wide band spectrum while the influence of aerodynamic effects and pavement properties was less obvious, but needs further investigation. Nonetheless, this study is first-of-its-kind in the world in that a two-wheeler was used to evaluate tire-pavement noise characteristics whose results were comparable to the commonly used automotive (four-wheeler) OBSI setup. It is also envisioned that the two-wheeler setup developed in this study can be comfortably utilized in road locations that do not have enough space to accommodate larger vehicles as well.
机译:这项研究的主要目的是理解和量化两轮车沿不同类型的路面横断时轮胎-路面噪声的相互作用。这涉及基于类似于车载声强(OBSI)的方法设计固定装置来记录源噪声,该固定装置安装在两轮车上。在沥青和水泥混凝土路面上记录速度变化时的现场噪声测量结果。该设备收集的轮胎路面噪声的频谱分析显示,胎面碰撞的影响是产生噪声的主要来源之一。发现在频谱区域中轮胎路面噪声占主导的频谱区域中的第一个峰值频率与车辆的速度和相邻胎面之间的距离成正比。此外,在两种类型的人行道中也都观察到与峰值频率成正比的谐波。路面纹理作为噪声源的影响似乎表现出较宽的频谱,而空气动力效应和路面性能的影响则不太明显,但需要进一步研究。但是,这项研究是世界上首例,因为使用了两轮车来评估轮胎-路面噪声特性,其结果可与常用的汽车(四轮车)OBSI设置相媲美。还可以预见,本研究中开发的两轮车设置可以在没有足够空间容纳较大车辆的道路位置轻松使用。

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