利用CFD模型预测曼谷巴吞湾地区PM2.5扩散

Punyisa Chaisri, P. Ponpesh
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引用次数: 1

摘要

城市形态、气象条件和排放源是影响城市街道峡谷内污染物扩散和浓度的重要因素。采用计算流体力学(CFD)模型,结合RANS标准k-epsilon湍流模型,对具有街道峡谷特征的曼谷Pathumwan区交通排放的PM2.5弥散进行了预测。研究区域涵盖了高纵横比的区域,如带有轻轨结构的购物中心区域。采用离散相位模型(DPM)模拟PM2.5的注入和扩散。研究了不同条件下的PM2.5浓度,以展示街道峡谷的轻轨结构、气象条件和新冠肺炎大流行导致的城市封锁对PM2.5浓度的影响。数值模型与曼谷环境局空气质量监测站的实测数据进行了验证。封城期间排放率下降,PM2.5浓度比平时下降1.35倍。此外,位于高层建筑之间的轻轨结构的城市配置导致PM2.5浓度比在Pathumwan地区没有轻轨结构的情况高约1.2倍。此外,还必须考虑气象条件,特别是风速和风向。最后,模拟得到的结果将用于提出降低PM2.5浓度的指导方针。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prediction of PM2.5 Dispersion in Bangkok Pathumwan District) Using CFD Modeling
City configuration, meteorological conditions and emission source are the important factors affecting the dispersion and concentration of pollutants within urban street canyon. The dispersion of PM2.5 emitted from traffic in Pathumwan district, Bangkok which has the characteristics of street canyon was predicted using a Computational Fluid Dynamics (CFD) model with the RANS standard k-epsilon turbulence model. The studied area covers the area with high aspect ratio such as the shopping center area with the skytrain structure. The Discrete Phase Model (DPM) was used for simulating the PM2.5 injection and dispersion. The concentrations of PM2.5 were investigated under different conditions to demonstrate the effects of skytrain structure in the street canyon, meteorological conditions, and city lockdown due to the COVID-19 pandemic on PM2.5 concentration. The numerical model was validated with the measured data from the air quality monitoring station of the Environment Bureau, Bangkok. The reduction of emission rate during the city lockdown causes the PM2.5 concentration to decrease by 1.35 times from the normal time. In addition, the city configuration with the skytrain structure located between the tall buildings results in higher PM2.5 concentration than the case without the skytrain structure in Pathumwan district by around 1.2 times. Moreover, the meteorological conditions must be considered, especially wind speed and direction. Finally, the results obtained from the simulation will be used for proposing the guidelines to reduce the concentration of PM2.5.
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