Niu Run Ping, Chen Xiaoyi, Liu Hua
Beijing University of Civil Engineering and Architecture, Beijing, 100044, China.
School of Civil Engineering, Chongqing University, Chongqing, 400044, China.
Sustain Cities Soc. 2022 Aug;83:103934. doi: 10.1016/j.scs.2022.103934. Epub 2022 May 11.
This study conducted objective physical tests and subjective questionnaire surveys related to the operation of a fresh air system in an office building in Beijing before the outbreak of the coronavirus disease 2019 (COVID-19). The long-term tests on indoor environmental parameters included air temperature, relative air humidity, air velocity, CO concentration, PM concentration, and fresh air volume, and the questionnaire surveyed the satisfaction of office workers in the indoor environment. The results showed that the indoor environmental parameters conformed to the values specified in relevant design standards; however, the satisfaction with the indoor environmental parameters was generally low. The probability of infection of indoor personnel with the virus causing COVID-19 under two existing fresh air system operation modes was calculated and compared, and it was less than 5%. A gray correlation analysis of the measured data with the questionnaire results identified indoor air temperature and quality as the main factors affecting the subjective satisfaction, which was consistent with the results of the questionnaire analysis. A new operation and maintenance method for fresh air systems was proposed for regular epidemic prevention and control to ensure the normal operation of the office building and the health of indoor personnel.
本研究在2019年冠状病毒病(COVID-19)疫情爆发前,对北京某办公楼的新风系统运行情况进行了客观物理测试和主观问卷调查。对室内环境参数的长期测试包括气温、相对空气湿度、风速、一氧化碳浓度、颗粒物浓度和新风量,问卷调查了办公人员对室内环境的满意度。结果表明,室内环境参数符合相关设计标准规定的值;然而,对室内环境参数的满意度普遍较低。计算并比较了两种现有新风系统运行模式下室内人员感染导致COVID-19的病毒的概率,该概率小于5%。对实测数据与问卷结果进行灰色关联分析,确定室内气温和空气质量是影响主观满意度的主要因素,这与问卷分析结果一致。提出了一种新风系统的新运维方法,用于常态化疫情防控,以确保办公楼的正常运行和室内人员的健康。