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Experimental and numerical analysis of heat transfer and airflow on an interactive building facade

机译:交互式建筑立面上传热和气流的实验和数值分析

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The envelope of a building is mainly responsible for its energy demand. Different kinds of double skin facades (DSFs) are nowadays used as a building envelope to reduce the energy demand and improve aesthetical view of buildings. Although DSF are already extensively used, their thermal performance is not well understood. This study presents a decoupling method capable to evaluate thermal performances and analyze fluid phenomena in a DSF. The solar radiation effects were evaluated with an analytical model and computational fluid dynamics (CFD) simulations were used to evaluate complex flow and thermal effect on a commercial DSF. With the decoupling approach to account for the effects of solar radiation and flow, the numerical results obtained by the CFD approach agree well with the experimental data collected on a full scale test room with a ventilated DSF. The method can be used to establish a database to develop a tool for DSF design.
机译:建筑物的围护结构主要负责其能源需求。如今,不同种类的双层外墙(DSF)被用作建筑物的围护结构,以减少能源需求并改善建筑物的美感。尽管DSF已被广泛使用,但对其热性能的了解还不够。这项研究提出了一种去耦方法,该方法能够评估DSF中的热性能并分析流体现象。使用分析模型评估了太阳辐射的影响,并使用计算流体力学(CFD)模拟来评估商业DSF上的复杂流动和热效应。使用去耦方法来考虑太阳辐射和流量的影响,通过CFD方法获得的数值结果与在通风DSF的全尺寸测试室中收集的实验数据非常吻合。该方法可用于建立数据库以开发用于DSF设计的工具。

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