Noise Mapping and Measurements for Sound Environment Assessment in a Typical Chinese Water-Rich Village

Xiaojiang Chen, Wenxuan Yue, Gongjun Huang, Zhengyong Zhang, Limin Zhang, Ningning Rong
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Abstract

The construction of beautiful villages in China is carrying more and more demand for leisure and health care, thus increasing requirements for the quality of the village environment. In this paper, Huanggongwang in Fuyang, Zhejiang Province in China, a typical water-rich village, was selected as the research object to study the sound environment quality by adapting noise mapping and field measurements. A village acoustic simulation model was established by the layout of the villages, roads, and water system; the three-dimensional spatial distribution of sound pressure level was based on actual sound source identification and measurements for sound environment evaluation. The result shows that the combination of the arithmetic mean value method for sound pressure level and noise pollution index approach can better represent the characteristics of sound environment quality compared with traditional noise evaluation standards. The average sound pressure level measured on-site in the village was 62.4 dB(A), and the PN index was 0.83, which reveals the importance of resolving the issue of environmental noise in the villages. Moreover, this evaluation method excludes the chance of actual measurement results. Therefore, it provides a better measure of the quality of the rural sound environment, which serves as a basis for the scientific planning of rural construction.
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中国典型富水村落声环境评估中的噪声绘图与测量
中国美丽乡村建设承载着越来越多的休闲养生需求,对村庄环境质量的要求也越来越高。本文选取了中国浙江富阳黄公望这一典型的富水村庄作为研究对象,通过噪声测绘和实地测量,对其声环境质量进行了研究。根据村庄、道路和水系布局,建立了村庄声学模拟模型;根据实际声源识别和测量结果,对声压级的三维空间分布进行了声环境评价。结果表明,与传统的噪声评价标准相比,声压级算术平均值法与噪声污染指数法相结合,更能体现声环境质量的特征。村庄现场测量的平均声压级为 62.4 dB(A),PN 指数为 0.83,这说明了解决村庄环境噪声问题的重要性。此外,这种评价方法排除了实际测量结果的偶然性。因此,它能更好地衡量农村声环境质量,为科学规划农村建设提供依据。
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