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Indoor environment quality assessment in classrooms: An integrated approach

机译:教室室内环境质量评估:一种综合方法

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Indoor Environmental Quality is an important issue in educational buildings since it is directly related to students' well-being and learning activities. Indoor Environmental Quality parameters have been assessed in three representative campus building typologies (old, new, and retrofitted), in Tehran, Iran, by measurements and questionnaire (n = 842) from July 2016 to April 2017. Results have been compared to the students' overall satisfaction level and recommended standards. According to results, minimum attention to local standards with regard to Indoor Air Quality, acoustic, and lighting, especially in the old and retrofitted buildings, seems the main reason of low environmental quality in the studied cases. Fitting a multiple regression model to the questionnaire data, a mathematical model is developed to predict the overall comfort (Indoor Environmental Quality index). Studied buildings have been ranked based on the Indoor Environmental Quality index from high quality: I (building C) to out of the comfort range: IV (building A). Moreover, results reveal that the acceptable range of each Indoor Environmental Quality parameters, especially with regard to thermal and acoustic comfort, is broader in real condition in comparison with the standards. Finally, the buildings' annual energy consumption is used to propose a Retrofit Potential Index in order to assess the impact of comfort parameters on energy consumption by integrated analyses.
机译:室内环境质量是教育建筑中的重要问题,因为它直接关系到学生的福祉和学习活动。 2016年7月至2017年4月,通过测量和问卷调查(n = 842)在伊朗德黑兰的三种代表性校园建筑类型(旧,新和改建)中评估了室内环境质量参数。将结果与学生进行了比较整体满意度和推荐标准。根据结果​​,在室内空气质量,声学和照明方面,特别是在老式和翻新建筑物中,对本地标准的关注最小,似乎是研究案例中环境质量低下的主要原因。将多元回归模型拟合到问卷数据中,开发了数学模型来预测总体舒适度(室内环境质量指数)。研究的建筑物已根据室内环境质量指数从高等级:I(C栋)到舒适范围:IV(A栋)。此外,结果表明,与标准相比,实际条件下每个室内环境质量参数的可接受范围(特别是在热舒适性和声学舒适性方面)更广。最后,建筑物的年能耗用于提出翻新潜力指数,以便通过综合分析评估舒适度参数对能耗的影响。

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