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Measurement of air exchange rates in different indoor environments using continuous CO2 sensors

机译:使用连续CO2传感器测量不同室内环境中的空气交换率

摘要

A new air exchange rate (AER) monitoring method using continuous CO2 sensors was developed and validated through both laboratory experiments and field studies. Controlled laboratory simulation tests were conducted in a 1-m(3) environmental chamber at different AERs (0.1-10.0 hr(-1)). AERs were determined using the decay method based on box model assumptions. Field tests were conducted in classrooms, dormitories, meeting rooms and apartments during 2-5 weekdays using CO2 sensors coupled with data loggers. Indoor temperature, relative humidity (RH), and CO2 concentrations were continuously monitored while outdoor parameters combined with on-site climate conditions were recorded. Statistical results indicated that good laboratory performance was achieved: duplicate precision was within 10%, and the measured AERs were 90%-120% of the real AERs. Average AERs were 1.22, 1.37, 1.10, 1.91 and 0.73 hr(-1) in dormitories, air-conditioned classrooms, classrooms with an air circulation cooling system, reading rooms, and meeting rooms, respectively. In an elderly particulate matter exposure study, all the homes had AER values ranging from 0.29 to 3.46 hr(-1) in fall, and 0.12 to 1.39 hr(-1) in winter with a median AER of 1.15.
机译:开发了一种使用连续CO2传感器的新型空气交换率(AER)监测方法,并通过实验室实验和现场研究进行了验证。在不同的AER(0.1-10.0 hr(-1))的1-m(3)环境室内进行了受控的实验室模拟测试。基于框模型假设,使用衰减方法确定AER。在2-5个工作日内,使用CO2传感器和数据记录仪在教室,宿舍,会议室和公寓中进行了现场测试。连续监测室内温度,相对湿度(RH)和CO2浓度,同时记录室外参数和现场气候条件。统计结果表明达到了良好的实验室性能:重复精度在10%以内,测得的AER为实际AER的90%-120%。宿舍,空调教室,配有空气循环冷却系统的教室,阅览室和会议室的平均AER分别为1.22、1.37、1.10、1.91和0.73 hr(-1)。在一项老年颗粒物暴露研究中,所有房屋的秋季AER值范围为0.29至3.46 hr(-1),冬季为0.12至1.39 hr(-1),AER中位数为1.15。

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