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Tyre-pavement interaction noise levels related to pavement surface characteristics

机译:与路面特性有关的轮胎-路面相互作用噪声水平

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In recent years, the quieter pavement surface which can affect traffic noise levels has been needed largely due to increasing public awareness and demand. The objective of this research is to utilise two methods of measuring tyre-pavement interaction noise and to investigate the influence of different pavement characteristics on tyre-pavement noise level. The first method used the close-proximity noise trailer and the second method used on-board sound intensity measurement. The pavement characteristics considered are pavement texture and smoothness, air voids, pavement stiffness, and nominal maximum aggregate size (NMAS) of asphalt mixtures. The tyre-pavement noise was measured by different techniques from various types of pavement sections in the National Center for Asphalt Technology test track. Testing was conducted on four major family groups of Superpave fine and coarse graded, open-graded friction course, and stone matrix asphalt mixes from 2009 Test Track research cycle to evaluate the changes over time. Relative significance analysis is performed to detect the combined effect of pavement texture and smoothness, air voids, pavement stiffness, and NMAS on tyre-road noise levels. The results show that the noise levels vary widely according to pavement surface type. The evaluation confirms that macrotexture increases the low-frequency noise and higher air void content reduces the high-frequency noise level, while other surface characteristics were found to have less influence on noise levels. The content of this study can be used in the vehicle and pavement noise development process to decrease the tyre-pavement interaction noise and for pavement design and construction to determine appropriate quieter pavement surfaces.
机译:近年来,由于公众意识和需求的提高,已经需要能够影响交通噪声水平的更安静的路面。这项研究的目的是利用两种测量轮胎-路面相互作用噪声的方法,并研究不同路面特性对轮胎-路面噪声水平的影响。第一种方法使用近距离噪声拖尾,第二种方法使用车载声音强度测量。所考虑的路面特性包括路面质地和光滑度,空隙,路面刚度以及沥青混合料的标称最大骨料尺寸(NMAS)。在国家沥青技术测试中心的各种类型的人行道上,通过不同的技术测量了轮胎的路面噪声。从2009 Test Track研究周期开始,对Superpave细级和粗级,开放级摩擦路线和石基沥青混合料的四个主要族群进行了测试,以评估随时间的变化。进行了相对显着性分析,以检测路面纹理和平整度,空气空隙,路面刚度和NMAS对轮胎噪声水平的综合影响。结果表明,噪声水平根据路面类型的不同而有很大差异。该评估证实宏观纹理会增加低频噪声,而较高的气隙含量会降低高频噪声水平,而其他表面特性对噪声水平的影响则较小。这项研究的内容可用于车辆和人行道的噪声发展过程中,以减少轮胎与人行道之间的相互作用噪声,并用于人行道的设计和施工以确定合适的较安静的人行道表面。

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