过往交通噪音的频谱比较

Zhuang Li
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引用次数: 1

摘要

交通噪声是环境噪声研究中的一个主要噪声源。不同的噪声产生机制描述了不同的光谱特征。有些是宽带噪声,比如发动机的撞击声;有些有特征频率,比如齿轮传动;有些是在一定的频率范围内,如轮胎/道路噪声。这些频谱特征影响建筑物的立面设计,以达到足够的外部隔音和令人满意的内部噪音,因为交通噪音。ISO标准11819-1规定了统计通过试验的测量程序。车速有三个范围:慢速、中速和快速。但是,它要求车辆在通过测试点时必须保持恒定的速度。不幸的是,车辆在加速时往往会产生更大的噪音,尤其是在低频时。因此,有必要区分十字路口的噪声水平和两个十字路口之间的道路中间点的噪声水平。据推测,十字路口的交通噪音水平会更高。本研究测量了不同限速地点的交通噪音。对这些位置的光谱进行了统计分析比较。这也是一种改进噪声图的努力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spectral Comparison of Pass-By Traffic Noise
Traffic noise is a major noise source in the study of environmental noise. Various noise generation mechanisms depict different spectral features. Some are wide-band noise, such as engine knocks; some have signature frequencies, such as gear transmissions; and some are in a certain frequency region, such as tire/road noise. These spectral features affect the façade design of a building in order to achieve sufficient exterior noise insulation and satisfactory interior noise due to the traffic noise. ISO standard 11819-1 specifies the measurement procedure of statistical pass-by tests. There are three ranges of vehicle speed: slow, medium, and fast. However, it requires that the vehicle must maintain constant speed when passing by the test point. Unfortunately, a vehicle tends to generate higher noise when accelerating, especially at low frequencies. Therefore, it is necessary to distinguish the noise levels at an intersection versus middle-points of the road between two intersections. Presumably, the traffic noise levels at an intersection would be higher. This research measured the traffic noise at various locations of different speed limits. Statistical analyses were conducted to compare the spectra at these locations. This is also an effort to refine the noise map.
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