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解析城市声景以揭示人为噪声变化的模式和驱动因素。

Decomposing an urban soundscape to reveal patterns and drivers of variation in anthropogenic noise.

机构信息

Department of Biological Sciences, Western Michigan University, Kalamazoo, MI 49008-5410, United States.

Department of Biological Sciences, Western Michigan University, Kalamazoo, MI 49008-5410, United States.

出版信息

Sci Total Environ. 2017 Dec 1;599-600:1191-1201. doi: 10.1016/j.scitotenv.2017.04.229. Epub 2017 May 13.

Abstract

Continuous and intermittent noise may have different effects on humans and wildlife, therefore distinguishing temporal patterns of noise and their drivers is important for policy regarding both public health and wildlife management. We visualized patterns and explored land-use drivers of continuous and high-amplitude intermittent sound pressure levels (SPLs) on an urban campus in Michigan, U.S.A. To visualize patterns of SPLs, we introduce decibel duration curves (DDCs), which show the cumulative frequency distribution of SPLs and aid in the interpretation of statistical SPLs (L values) that reflect continuous versus intermittent sounds. DDCs and L values reveal that our 24 recording locations varied in the intensity of both continuous and intermittent noise, with intermittent high-amplitude sound events in particular contributing to variability in SPLs over the study site. Time of day influenced both continuous and intermittent SPLs, as locations relatively close to manmade structures (buildings, roads and parking lots) experienced higher SPLs as the day progressed. Continuous SPLs increased with decreasing distance to manmade structures, whereas intermittent SPLs increased with decreasing distance to roads and increasing distance to buildings. Thus, different land-use factors influenced patterns of continuous and intermittent noise, which suggests that different policy and strategies may be needed to ameliorate their effects on the public and wildlife.

摘要

连续和间断噪声可能对人类和野生动物产生不同的影响,因此区分噪声的时间模式及其驱动因素对于公共卫生和野生动物管理的政策都很重要。我们在美国密歇根州的一个城市校园可视化了连续和高振幅间断声压级 (SPL) 的模式,并探讨了其土地利用驱动因素。为了可视化 SPL 模式,我们引入了分贝持续时间曲线 (DDC),它显示了 SPL 的累积频率分布,有助于解释反映连续和间断声音的统计 SPL (L 值)。DDC 和 L 值表明,我们的 24 个记录位置在连续和间断噪声的强度上存在差异,特别是间断高声级声音事件导致研究地点的 SPL 变化很大。一天中的时间影响连续和间断 SPL,因为随着时间的推移,相对靠近人造结构(建筑物、道路和停车场)的位置会经历更高的 SPL。连续 SPL 随与人造结构距离的减小而增加,而间断 SPL 随与道路距离的减小和与建筑物距离的增加而增加。因此,不同的土地利用因素影响连续和间断噪声的模式,这表明可能需要不同的政策和策略来减轻它们对公众和野生动物的影响。

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