Department of Architecture, Xi'an Jiaotong - Liverpool University, Suzhou 215123, China; School of Architecture, University of Liverpool, Liverpool L69 7ZX, United Kingdom.
Department of Civil Engineering and Energy Technology, Oslo Metropolitan University, Oslo 0130, Norway.
Sci Total Environ. 2022 Dec 10;851(Pt 2):158026. doi: 10.1016/j.scitotenv.2022.158026. Epub 2022 Aug 13.
This study conducted an experimental analysis of how indoor air quality (IAQ) is influenced by the outdoor air pollutants levels, infiltration rate, and occupants' behaviours. The impacts of these factors on IAQ were analyzed using on-site measurements and numerical simulations. The results contribute to a better understanding of how to control the Indoor Particulate Level (IPL) for the specific conditions of the studied building. Results showed that occupant behaviour was the primary factor in determining the IPL, significantly changing the number of outdoor particles introduced to the building. Moreover, it was found that the IPL was exponentially correlated to the Outdoor Particulate Level (OPL). Based on numerical simulations, this study concluded that smaller particles do not always have more chance than larger particles of accessing the indoor environment through the building envelope. Meanwhile, a steady-state indoor particle concentration numerical model was established and verified using the 4-fold cross-validation method. Finally, simulation results identified that the room infiltration rate had a positive linear impact on IAQ if the OPL was under 30 μg/m. This is because the increased air exchange rate can help to dilute indoor air pollutants when the outdoor air is relatively clean.
本研究通过现场测量和数值模拟,对室内空气质量(IAQ)受室外空气污染物水平、渗透率和人员行为的影响进行了实验分析。这些因素对室内空气质量的影响进行了分析。研究结果有助于更好地了解如何针对所研究建筑物的具体条件控制室内颗粒物水平(IPL)。结果表明,人员行为是决定 IPL 的主要因素,显著改变了引入建筑物的室外颗粒物数量。此外,研究发现 IPL 与室外颗粒物水平(OPL)呈指数相关。基于数值模拟,本研究得出结论,较小的颗粒物并不总是比较大的颗粒物更有机会通过建筑物围护结构进入室内环境。同时,使用 4 倍交叉验证方法建立并验证了稳态室内颗粒浓度数值模型。最后,模拟结果表明,如果 OPL 低于 30μg/m,房间渗透率对室内空气质量具有正向线性影响。这是因为当室外空气相对清洁时,增加的空气交换率可以帮助稀释室内空气污染物。