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Occupants' thermal comfort and perceived air quality in natural ventilated classrooms during cold days

机译:寒冷天气下自然通风教室中乘员的热舒适度和感知的空气质量

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In north-west China, a number of university classrooms are natural ventilated during cold days when the prevailing mean outdoor air temperature is about 10 degrees C. This study investigated the students' thermal comfort and perceived air quality in natural ventilated university classrooms under such low outdoor temperature. 30 field-surveys were conducted in seven typical university classrooms during November 2017 in a sub-provincial city of Xi'an located in the north-west of China in the cold climate zone. A total of 992 responses from the university students ages between 17 and 22 years were received. The results showed that the thermal neutral temperature was 20.6 degrees C; the thermal comfort temperature range was from 19.5 to 21.8 degrees C; the occupants' preference temperature was 22.78 degrees C. The thermal dissatisfaction rate was lower than 10% when the indoor operative temperature ranges between 18.3 and 23.8 degrees C. The percentage of dissatisfied occupants for indoor air quality was higher than 20% in some cases and it was not related to CO2 concentration. Based on the survey results, it was found that the comfort temperature calculated by the aPMV model (China's thermal comfort model for free-running buildings) was higher than the experiment results. The occupant density affected the perceived air quality, but had no effect on thermal sensation. Moreover, the influence factors of perceived air quality including indoor temperature, enthalpy, thermal acceptability and thermal sensation were analyzed. Results showed that the occupants' acceptability of indoor air quality was mainly affected by thermal sensation.
机译:在西北地区,寒冷的日子里,当室外平均气温大约为10摄氏度时,许多大学教室是自然通风的。本研究调查了在如此低的自然通风条件下,学生在自然通风的大学教室中的热舒适度和感知的空气质量室外温度。 2017年11月,在中国西北部,气候寒冷地区的一个副省级城市西安,在七个典型的大学教室中进行了30次现场调查。总共收到172至22岁大学生的992份回复。结果表明,热中性温度为20.6℃。热舒适温度范围为19.5至21.8摄氏度;居住者的偏好温度为22.78摄氏度。当室内工作温度介于18.3和23.8摄氏度之间时,热不满意率低于10%。在某些情况下,对室内空气质量的不满意居住者的百分比高于20%,并且它与二氧化碳浓度无关。根据调查结果,发现由aPMV模型(中国的自由运行建筑物的热舒适模型)计算出的舒适温度高于实验结果。乘员密度影响感知的空气质量,但对热感没有影响。此外,分析了感知空气质量的影响因素,包括室内温度,焓,热可接受性和热感。结果表明,居住者对室内空气质量的可接受性主要受热感影响。

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