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Experimental study of a modular Unglazed transpired collector Facade for building refurbishment

机译:用于建筑翻新的模块化无釉蒸发收集器立面的实验研究

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The use of renewable energy sources available for buildings to reduce energy consumption and emissions has become extremely important over the last few decades. Unglazed transpired collector (UTC) facades absorb solar radiation to preheat the ventilation air at a low cost and with minimum intervention for existing buildings. In this study, a UTC facade module was built and monitored in the field in winter during the continental cold and dry climate of Cordoba, Spain. With the data obtained, the feasibility of the installation of this facade system was evaluated. The values of efficiency, effectiveness and temperature increase measured during the experiment were analysed statistically, and the influence of solar radiation and ambient temperature on them were studied. The values of efficiency and effectiveness presented widespread cumulative distribution functions with mean values similar to those reported in other controlled experiments found in literature. A case study was carried out to analyse the feasibility of installing a UTC facade to reduce the energy consumption of the ventilation load in a typical apartment. It was found that in 74.6% of the days considered in this study the ventilation heating demand would be covered. Refurbishment of building facades using this UTC modular approach could be considered an alternative to reduce ventilation and heating energy consumption.
机译:在过去的几十年中,使用可用于建筑物的可再生能源来减少能耗和排放已变得极为重要。未上釉的蒸发收集器(UTC)外墙吸收太阳辐射以低成本预热通风空气,并且对现有建筑物的干预最少。在这项研究中,在西班牙科尔多瓦的大陆性寒冷和干燥气候的冬季,在田间建造并监控了UTC外墙模块。利用获得的数据,评估了安装该立面系统的可行性。对实验过程中测得的效率,有效性和温升值进行统计分析,并研究太阳辐射和环境温度对其的影响。效率和有效性的值呈现出广泛的累积分布函数,其平均值与文献中其他受控实验中报告的平均值相似。进行了案例研究,分析了安装UTC外墙以减少典型公寓中通风负荷的能耗的可行性。结果发现,在这项研究中,有74.6%的天数可以满足通风供暖需求。使用这种UTC模块化方法翻新建筑外墙可以被认为是减少通风和供暖能耗的替代方法。

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