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Application of a developed adaptive model in the evaluation of thermal comfort in ventilated kindergarten occupied spaces

机译:改进的自适应模型在通风幼儿园占用空间热舒适性评估中的应用

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In this work the application of a developed adaptive model in the evaluation of thermal comfort in ventilated kindergarten occupied spaces is made. The study, conducted in real conditions, in mediterranean environment for cold and warm thermal conditions is made. The adaptive model is developed in a Kindergarten, using subjective and experimental measurements. Three different trained groups of subjects are used. Each one expressed its thermal subjective response, in different classrooms, for cold and warm thermal conditions. In the study, the classrooms are ventilated by natural airflow, while the indoor playground is ventilated by forced airflow. The natural airflow in the classrooms is measured using tracer gas decreasing concentration. The measurements are made for different window states, from close state to open state. In both warm and cold thermal conditions the simulation is made in real occupation and ventilation conditions. The natural ventilation is promoted, in both thermal conditions, using experimental measurements. In cold thermal conditions the forced airflow is done from the greenhouse to the indoor playground, while in warm thermal conditions the forced airflow is done in the opposite direction. In the thermal comfort level evaluation the developed adaptive model is used, while in the air quality level evaluation the carbon dioxide concentration released by the occupants is used.
机译:在这项工作中,开发了一种自适应模型,用于评估通风的幼儿园居住空间的热舒适性。这项研究是在地中海自然环境中针对寒冷和温暖的热条件进行的。自适应模型是在幼儿园使用主观和实验方法开发的。使用了三个不同的受过训练的科目组。每个人都在不同的教室中针对冷热天气条件表达其热主观反应。在研究中,教室采用自然气流进行通风,而室内游乐场采用强制气流进行通风。教室中的自然气流是使用示踪气体降低浓度来测量的。针对从关闭状态到打开状态的不同窗口状态进行测量。在热和冷热条件下,都在实际的居住和通风条件下进行仿真。使用实验测量结果,可以在两种热条件下促进自然通风。在寒冷的热条件下,强制气流从温室流向室内操场,而在温暖的热条件下,强制气流沿相反的方向流动。在热舒适水平评估中,使用开发的自适应模型,而在空气质量水平评估中,使用乘员释放的二氧化碳浓度。

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