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A numerical and experimental study of a cellular passive solar facade system for building thermal control

机译:用于建筑热控制的蜂窝式无源太阳能立面系统的数值和实验研究

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摘要

About 39% of total energy in the United States is consumed in residential and commercial buildings. Passive Solar Design (PSD) strategies have been successful in reducing building energy consumption, however, they require a substantial design effort for each individual project and are also difficult to implement in building retrofit projects. These characteristics tend to inhibit the widespread use of PSD principles in buildings today. In this paper a building envelop system is presented that incorporates small air cells backed by phase change material. The goal is to achieve quasi-constant core temperatures within a building enclosure system. The proposed technology results in a cladding system that can be used to thermally condition buildings. Initial experimental and numerical research efforts show that the system has significant potential to function properly when exposed to winter conditions. While initial results are promising, the system will require dynamic response to function properly in both winter and summer conditions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在美国,约39%的总能源消耗在住宅和商业建筑中。被动式太阳能设计(PSD)策略已成功地降低了建筑能耗,但是,它们需要为每个单独的项目进行大量的设计工作,并且在建筑改造项目中也难以实施。这些特征倾向于抑制PSD原理在当今建筑物中的广泛使用。在本文中,提出了一种建筑信封系统,该系统包含由相变材料支持的小型气囊。目标是在建筑物围护系统内达到准恒定的核心温度。所提出的技术导致可用于对建筑物进行热调节的覆层系统。最初的实验和数值研究成果表明,该系统在暴露于冬季条件下具有正常运行的巨大潜力。尽管初步结果令人鼓舞,但该系统将需要动态响应才能在冬季和夏季条件下正常运行。 (C)2017 Elsevier Ltd.保留所有权利。

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