环境科学
污染物
小气候
城市形态
空气质量指数
空气污染
微尺度化学
风速
空气污染指数
环境工程
扩散
城市规划
城市热岛
污染
气象学
地理
土木工程
生态学
数学
工程类
物理
考古
生物
热力学
数学教育
作者
Zhiwen Jiang,Haomiao Cheng,Peihao Zhang,Tianfang Kang
标识
DOI:10.1016/j.jes.2020.12.035
摘要
Air pollution has a serious fallout on human health, and the influences of the different urban morphological characteristics on air pollutants cannot be ignored. In this study, the relationship between urban morphology and air quality (wind speed, CO, and PM2.5) in residential neighborhoods at the meso-microscale was investigated. The changes in the microclimate and pollutant diffusion distribution in the neighborhood under diverse weather conditions were simulated by Computational Fluid Dynamics (CFD). This study identified five key urban morphological parameters (Building Density, Average Building Height, Standard Deviation of Building Height, Mean Building Volume, and Degree of Enclosure) which significantly impacted the diffusion and distribution of pollutants in the neighborhood. The findings of this study suggested that three specific strategies (e.g. volume of a single building should be reduced, DE should be increased) and one comprehensive strategy (the width and height of the single building should be reduced while the number of single buildings should be increased) could be illustrated as an optimized approach of urban planning to relief the air pollution. The result of the combined effects could provide a reference for mitigating air pollution in sustainable urban environments.
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