首页> 外文会议>Proceedings of the 10th International Building Performancs Simulation Association Conference and Exhibition >THE IMPACT OF TRAFFIC-RELATED POLLUTANT ON INDOOR AIR QUALITY IN BUILDINGS NEAR MAIN ROADS
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THE IMPACT OF TRAFFIC-RELATED POLLUTANT ON INDOOR AIR QUALITY IN BUILDINGS NEAR MAIN ROADS

机译:交通相关污染物对主要道路附近建筑物室内空气质量的影响

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Traffic–related pollutant has been recognized as an air pollution hot spot due to its large emission rate and great health impacts for the exposed population. In the present investigation, a computational fluid dynamics technique is used to evaluate the effect of traffic pollutions on indoor air quality of a naturally ventilated building. The transport of street-level nonreactive pollutants emitted from motor vehicles into the indoor environment is simulated using the RNG k-|? model of the turbulent flows and the pollutant transport equations. Three typical configurations of street canyons and six ventilation scenarios are considered. It is found that the layout of street canyon affects not only the airflow pattern but also the ventilation rates, paths and indoor air quality for that building. When the studied building is located in the street canyon with aspect rate 0.2, using the leeward cross-flow ventilation with windward upper vent can effectively lower incoming vehicle pollutants and maintain a desirable air change rate during traffic rush hours. But when the street canyon aspect rate is equal to 0.5, this ventilation mode has no significant advantage compared with other cross ventilation modes. Moreover, the leeward side vents may become a significant factor contributing to indoor concentration of traffic pollutants when the studied buildings are located in a narrow street such as aspect rate equal to 1.
机译:与交通有关的污染物由于其高排放率和对裸露人群的健康影响而被公认为是空气污染的热点。在本研究中,使用计算流体动力学技术评估交通污染对自然通风建筑室内空气质量的影响。使用RNG k- |?模拟从机动车排放的街道级非反应性污染物向室内环境的运输。湍流模型和污染物迁移方程。考虑了街道峡谷的三种典型配置和六种通风方案。结果发现,街道峡谷的布局不仅影响建筑物的气流模式,而且影响通风率,路径和室内空气质量。当所研究的建筑物位于纵横比为0.2的街道峡谷中时,使用带有迎风上方通风口的背风横流通风系统可以有效地降低进入的车辆污染物,并在交通高峰时段保持理想的换气率。但是,当街道峡谷纵横比等于0.5时,与其他交叉通风模式相比,该通风模式没有明显优势。此外,当所研究的建筑物位于狭窄的街道上(例如长宽比等于1)时,背风侧通风孔可能成为导致室内交通污染物浓度升高的重要因素。

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