Yellow River Laboratory, Zhengzhou University, Zhengzhou 450001, China.
School of Water Conservancy Engineering, Zhengzhou University, Zhengzhou 450001, China.
Int J Environ Res Public Health. 2023 Feb 28;20(5):4361. doi: 10.3390/ijerph20054361.
Non-point source fugitive dust produced during municipal road construction is one of the main ambient air pollutants gravely threatening the life and health of construction workers and residents around construction areas. In this study, a gas-solid two-phase flow model is used to simulate the diffusion behavior of non-point source dust with different enclosure heights under wind loads. Moreover, the inhibitory effect of the enclosure on the diffusion of non-point source dust from construction to residential areas is analyzed. The results show that the physical blocking and reflux effects of the enclosure can effectively restrain dust diffusion. When the enclosure height is 3-3.5 m, the concentration of particulate matter in most sections of residential areas can be reduced to less than 40 μg/m. Moreover, when the wind speed is 1-5 m/s and the enclosure height is 2-3.5 m, the diffusion height of non-point source dust particles above the enclosure is concentrated in the range 1.5-2 m. This study provides a scientific basis for setting the heights of enclosures and atomization sprinklers at construction sites. Further, effective measures are proposed to reduce the impact of non-point source dust on the air environment of residential areas and health of residents.
市政道路施工过程中产生的非点源扬尘是威胁施工人员及周边居民生命健康的主要环境空气污染物之一。本研究采用气固两相流模型模拟了不同围挡高度下风载作用下非点源扬尘的扩散行为,并分析了围挡对施工区向居民区扩散的非点源扬尘的抑制效果。结果表明,围挡的物理阻挡和回流作用可以有效抑制扬尘扩散。当围挡高度为 3-3.5 m 时,居民区大部分区域的颗粒物浓度可降至 40μg/m 以下。而且,当风速为 1-5 m/s 且围挡高度为 2-3.5 m 时,围挡上方非点源扬尘颗粒的扩散高度集中在 1.5-2 m 范围内。本研究为施工现场围挡和雾化喷淋高度的设置提供了科学依据,并进一步提出了有效措施来降低非点源扬尘对居民区空气环境和居民健康的影响。