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Experimental Analysis of Cool Traditional Solar Shading Systems for Residential Buildings

机译:住宅建筑传统传统阴凉遮阳系统的实验分析

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In recent years there has been a growing interest in the development and thermal-energy analysis of passive solutions for reducing building cooling needs and thus improving indoor thermal comfort conditions. In this view, several studies were carried out about cool roofs and cool coatings, producing acknowledged mitigation effects on urban heat island phenomenon. The purpose of this work is to investigate the thermal-energy performance of cool louvers of shutters, usually installed in residential buildings, compared to dark color traditional shading systems. To this aim, two full-scale prototype buildings were continuously monitored under summer conditions and the role of the cool shutter in reducing the overheating of the shading system and the energy requirements for cooling was analyzed. After an in-lab optical analysis of the cool coating, showing a huge solar reflectance increase with respect to the traditional configuration, i.e., by about 75%, field monitoring results showed that the cool shutter is able to decrease the indoor air temperature up to 2 °C under free floating conditions. The corresponding energy saving was about 25%, with even much higher peaks during very hot summer conditions.
机译:近年来,人们越来越关注无源解决方案的开发和热能分析,以减少建筑物的制冷需求,从而改善室内的热舒适条件。据此,对凉爽的屋顶和凉爽的涂层进行了一些研究,对城市热岛现象产生了公认的缓解作用。这项工作的目的是研究与深色传统遮阳系统相比,通常安装在住宅建筑中的百叶窗冷百叶窗的热能性能。为此,在夏季条件下对两座大型原型建筑进行了连续监测,并分析了冷却百叶窗在减少遮阳系统过热方面的作用以及冷却所需的能量。在对冷涂层进行实验室内光学分析后,显示出相对于传统配置而言的太阳反射率大幅增加,即增加了约75%,现场监测结果表明,冷百叶窗能够将室内空气温度降低至自由浮动条件下为2°C。相应的节能量约为25%,在炎热的夏季条件下的峰值甚至更高。

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