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On The Intrinsic Flexibility of the Double Skin Façade: A Comparative Thermal Comfort Investigation in Tropical and Temperate Climates

机译:双层玻璃幕墙的固有柔性:热带和温带气候下的热舒适性比较研究

摘要

Double Skin Façades (DSFs) are applied in both new and existing buildings, and most of such applications are found in temperate climates. Although research in this area is growing steadily, comparative analyses of DSF applications in different climates are still few and far between. This paper addresses such a gap by means of a comparative thermal comfort analysis of a DSF building model in both tropical and temperate climates. London and Rio de Janeiro have been selected as two representative cities, and three building orientations in each city have been considered; S, SW, and SE, for London in northern hemisphere and N, NW, and NE for Rio in southern hemisphere. Dynamic building energy modelling has been used to determine and assess indoor environmental conditions. While IES VE as the main software tool was utilised, the accuracy and reliability of the results were also cross-checked against a computational fluid dynamic (CFD) software package. Thermal comfort has been assessed through the adaptive comfort approach and results have been analysed and presented in form of comfortable indoor conditions during occupied hours. Results of this study show that the intrinsic flexibility of the DSF can offer indoor comfort for more than half of a year in both climates without any need for mechanical heating/cooling, which contributes significantly to reducing energy demands and cutting CO2 emissions. Additionally, the study shows that the wind force plays a dominant role in driving airstreams in and through the DSF, which highly impacts the overall thermal performance of the buildings. Findings from this research can be useful to academics and practitioners alike, to inform better DSF design and to shed light onto further avenues for DSF research.
机译:双层外墙(DSF)既可用于新建建筑物,也可用于现有建筑物,并且大多数此类应用都出现在温带气候中。尽管该领域的研究稳步增长,但在不同气候下对DSF应用的比较分析仍然很少且相差甚远。本文通过在热带和温带气候条件下对DSF建筑模型进行比较热舒适性分析来解决这一差距。伦敦和里约热内卢已被选为两个有代表性的城市,并且考虑了每个城市的三个建筑方向。 S,SW和SE,分别代表北半球的伦敦和N,NW和NE,代表南半球的里约。动态建筑能量建模已用于确定和评估室内环境条件。使用IES VE作为主要软件工具时,还通过计算流体动力学(CFD)软件包对结果的准确性和可靠性进行了交叉检查。已通过自适应舒适性方法评估了热舒适性,并在居住时间内以舒适的室内条件的形式对结果进行了分析和介绍。这项研究的结果表明,DSF的固有柔韧性可以在两种气候条件下提供半年以上的室内舒适度,而无需进行机械加热/冷却,这极大地有助于减少能源需求并减少CO2排放。此外,研究表明,风力在DSF内和通过DSF的气流驱动中起着主导作用,这极大地影响了建筑物的整体热性能。这项研究的发现对于学者和从业者都可能是有用的,可以为更好的DSF设计提供信息,并为DSF研究提供更多途径。

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