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Indoor temperature, relative humidity and CO_2 levels assessment in academic buildings with different heating, ventilation and air-conditioning systems

机译:具有不同供暖,通风和空调系统的学术建筑物的室内温度,相对湿度和CO_2水平评估

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Indoor air quality (IAQ) is a matter of immense concern for human health as people spend major portion of their lifetime indoor. Keeping in view, this study was aimed to investigate and compare the IAQ and thermal comfort in classrooms of four buildings of an educational institute having different types of heating ventilation and air conditioning system. On-site continuous measurements of indoor levels of CO2, temperature and relative humidity were recorded at an interval of 1 min for both weekdays, including occupational and non-occupational hours as well as weekends. Simultaneous outdoor temperature and relative humidity measurements were also used in the analysis. Statistical analysis of mean hourly values of each studied classroom showed significant difference (p 0.05) in CO2 levels over the weekday and also among different buildings. Similarly, variation in hourly mean levels of thermal comfort parameters was also found significant (p 0.05) among the buildings as well as over the weekday. However, variation in hourly mean temperature over weekday for one particular building and all three parameters over weekends for all buildings was not significant (p 0.05). Exceedance in levels of CO2 from ASHRAE standards was found to be more in buildings with non-centralized systems as compared to buildings with centralized systems during the occupational period. Moreover, thermal comfort parameters were found to be influenced by outdoor climatic conditions and buildings orientation.
机译:由于人们将一生的大部分时间都花在室内,因此室内空气质量(IAQ)是人类健康的重大问题。考虑到这一点,本研究旨在调查和比较教育机构的四栋建筑物(不同类型的采暖通风和空调系统)的教室中的室内空气质量和热舒适度。在工作日(包括职业时间和非职业时间)以及周末,每隔1分钟记录一次室内连续测量的室内CO2,温度和相对湿度。分析中还使用了同时进行的室外温度和相对湿度测量。每个学习教室的每小时平均价值的统计分析表明,在工作日以及不同建筑物之间,CO2水平存在显着差异(p <0.05)。同样,在建筑物之间以及整个工作日中,热舒适性参数的小时平均水平变化也很明显(p <0.05)。但是,对于一栋特定建筑物,所有建筑物在工作日的每小时平均温度变化以及在周末所有三个参数的变化均不显着(p> 0.05)。在职业期间,与集中式系统相比,非集中式系统的建筑物中ASHRAE标准的二氧化碳含量更高。此外,发现热舒适性参数受室外气候条件和建筑物朝向的影响。

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