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利用 CFD 模拟分析防尘网对施工现场颗粒物扩散的影响。

Analysis of the effect of dust barriers on particulate matter dispersion from a construction site using CFD simulation.

机构信息

Department of Architecture and Architectural Engineering, Yonsei University, Seoul, Republic of Korea.

出版信息

Environ Pollut. 2023 Dec 1;338:122679. doi: 10.1016/j.envpol.2023.122679. Epub 2023 Oct 3.

Abstract

Urban construction activities generate particulate matter (PM), which poses a severe threat to urban residents' quality of life. The complex topography of urban areas and turbulent air flow make it difficult to predict PM dispersion and establish control measures. This study predicted PM dispersion from construction sites to urban areas under four wind directions using CFD simulations and determined optimal dust barrier heights for reducing PM exposure. This study showed that PM exposure on residents depends on wind directions in the urban area up to 2.3 times, still a flexible approach to determine optimal barrier heights based on stakeholder preferences was effective in all wind directions. Accurate PM dispersion predictions and control measures are crucial for improving urban air quality and residents' well-being.

摘要

城市建设活动会产生颗粒物(PM),这对城市居民的生活质量构成了严重威胁。城市地区复杂的地形和不稳定的气流使得难以预测 PM 的扩散并制定控制措施。本研究使用 CFD 模拟预测了来自四个风向的建筑工地向城市地区的 PM 扩散,并确定了降低 PM 暴露的最佳防尘屏障高度。本研究表明,居民的 PM 暴露取决于城市地区的风向,最高可达 2.3 倍,根据利益相关者的偏好确定最佳屏障高度仍然是一种灵活的方法,在所有风向都有效。准确的 PM 扩散预测和控制措施对于改善城市空气质量和居民的幸福感至关重要。

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