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The modifying effect of the building envelope on population exposure to PM2.5 from outdoor sources

机译:建筑围护结构对室外暴露于PM2.5人群的影响

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摘要

A number of studies have estimated population exposure to PM2.5 by examining modeled or measured outdoor PM2.5 levels. However, few have taken into account the mediating effects of building characteristics on the ingress of PM2.5 from outdoor sources and its impact on population exposure in the indoor domestic environment. This study describes how building simulation can be used to determine the indoor concentration of outdoor-sourced pollution for different housing typologies and how the results can be mapped using building stock models and Geographical Information Systems software to demonstrate the modifying effect of dwellings on occupant exposure to PM2.5 across London. Building archetypes broadly representative of those in the Greater London Authority were simulated for pollution infiltration using EnergyPlus. In addition, the influence of occupant behavior on indoor levels of PM2.5 from outdoor sources was examined using a temperature-dependent window-opening scenario. Results demonstrate a range of I/O ratios of PM2.5, with detached and semi-detached dwellings most vulnerable to high levels of infiltration. When the results are mapped, central London shows lower I/O ratios of PM2.5 compared with outer London, an apparent inversion of exposure most likely caused by the prevalence of flats rather than detached or semi-detached properties.
机译:许多研究通过检查模拟或测量的室外PM2.5水平来估计人口暴露于PM2.5。但是,很少有人考虑建筑特性对室外来源PM2.5进入的中介作用及其对室内室内环境中人口暴露的影响。这项研究描述了如何使用建筑物模拟来确定不同住房类型的室外污染源的室内浓度,以及如何使用建筑物模型和地理信息系统软件来绘制结果图,以说明住房对乘员暴露于环境的影响。整个伦敦的PM2.5。使用EnergyPlus模拟了大伦敦地区代表的建筑原型的污染渗透情况。此外,使用与温度有关的开窗场景,研究了乘员行为对室外来源室内PM2.5浓度的影响。结果表明,PM2.5的I / O比率范围很广,其中独立式和半独立式住宅最容易受到高渗透率的影响。将结果绘制成图后,伦敦市中心的PM2.5的I / O比伦敦外围地区的PM / I比低,这很可能是由于单位普遍而不是独立式或半独立式房屋所致。

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