Locating air quality monitoring stations utilizing computational fluid dynamics

M. Jaeger, D. Adair, M. Zhunussova
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Abstract

With the advancement of high-resolution Computational Fluid Dynamics (CFD), measurements of variables related to the urban environment, such as air quality, can be optimized. Regarding smart solutions for the future cities, CFD allows for the optimizing of location for instrumentation to monitor air quality in order to facilitate optimized measures to counteract any potential detrimental effect on the local populations' health, at relatively low cost. To illustrate the power and efficiency of CFD this paper reports on a study in Kuwait of the dispersion of CO2 gas. Based on the case of dispersion of CO2 emanating from traffic in a busy street and in the vicinity of a complex configuration of buildings located in Salmiya, Kuwait City, the suggested location for installing air quality monitoring instrumentation has been identified for two situations: before and after adding a new building. Before adding the new building, the highest CO2 concentration was found in the immediate proximity of the residential buildings some 200 m South-East of the main street. After adding the new building, the highest CO2 concentration was found on the windward side of the new building immediately next to the main street. The new configuration of buildings suggests a new location for any air quality monitoring instrumentation in order to measure the highest concentration of air pollution.
利用计算流体动力学定位空气质量监测站
随着高分辨率计算流体动力学(CFD)的发展,与城市环境相关的变量(如空气质量)的测量可以得到优化。关于未来城市的智能解决方案,CFD允许优化仪器的位置,以监测空气质量,以促进优化措施,以相对较低的成本抵消对当地人口健康的任何潜在有害影响。为了说明CFD的威力和效率,本文报道了在科威特进行的一项关于CO2气体分散的研究。根据位于科威特市Salmiya的一条繁忙街道和一组复杂建筑物附近的交通产生的二氧化碳分散的情况,确定了两种情况下安装空气质量监测仪器的建议地点:在增加新建筑物之前和之后。在增加新建筑之前,二氧化碳浓度最高的地方是靠近住宅楼的地方,大约在主街东南200米。在增加新建筑后,在紧挨着主街的新建筑的迎风面发现了最高的二氧化碳浓度。建筑物的新配置为任何空气质量监测仪器提供了新的位置,以便测量空气污染的最高浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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