Impact of solar reflectivity and infrared emissivity on the thermal performance of metal and concrete roofs in cloudy warm-humid climate

IF 3.1 1区 艺术学 0 ARCHITECTURE
Jefferson Torres-Quezada , Antonio Isalgué , Helena Coch
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引用次数: 0

Abstract

Regions near latitude 0° are characterized by warm-humid climate and also by high cloudiness. In these regions, metal roofs has been the most widely used typology. However, in the last decades, the use of heavy concrete roofs has increased significantly. Given its material characteristics, this roof typology offers a higher thermal resistance and thermal mass than a metal roof. Most strategies focus on the use of these characteristics, as well as the use of high reflectivity and emissivity. However, the impact of cloudiness on the effectiveness of these strategies has been little addressed. This research focuses on the impact of reflectivity and emissivity change on the thermal performance of these two roofs in a cloudy warm-humid climate. To achieve this objective, simulations validated with measurements were used. The results show that the efficiency of reflectivity and emissivity is lower in this region compared to other regions. The impact of these properties is further reduced with increasing thermal mass or decreasing thermal transmittance, so the effectiveness of reflectivity and emissivity is minimal on the concrete roof. Finally, this study supports that a metal roof with a reflectivity and emissivity above 0.70 can offer lower daily average temperatures than a concrete roof.

多云暖湿气候下太阳反射率和红外线发射率对金属和混凝土屋顶热性能的影响
纬度 0°附近地区的特点是气候温暖潮湿,云量较多。在这些地区,金属屋顶一直是使用最广泛的类型。然而,在过去的几十年中,重型混凝土屋顶的使用量显著增加。鉴于其材料特性,这种屋顶类型比金属屋顶具有更高的热阻和热质量。大多数策略都侧重于利用这些特性以及高反射率和高发射率。然而,云雾对这些策略效果的影响却鲜有涉及。本研究的重点是在多云暖湿气候条件下,反射率和发射率的变化对这两种屋顶热性能的影响。为了实现这一目标,我们使用了模拟与测量结果进行验证。结果表明,与其他地区相比,该地区的反射率和发射率效率较低。随着热质量的增加或热透射率的降低,这些特性的影响会进一步减小,因此反射率和发射率对混凝土屋顶的作用微乎其微。最后,这项研究证明,反射率和发射率高于 0.70 的金属屋顶可以提供比混凝土屋顶更低的日平均温度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
6.20
自引率
2.90%
发文量
430
审稿时长
30 weeks
期刊介绍: Frontiers of Architectural Research is an international journal that publishes original research papers, review articles, and case studies to promote rapid communication and exchange among scholars, architects, and engineers. This journal introduces and reviews significant and pioneering achievements in the field of architecture research. Subject areas include the primary branches of architecture, such as architectural design and theory, architectural science and technology, urban planning, landscaping architecture, existing building renovation, and architectural heritage conservation. The journal encourages studies based on a rigorous scientific approach and state-of-the-art technology. All published papers reflect original research works and basic theories, models, computing, and design in architecture. High-quality papers addressing the social aspects of architecture are also welcome. This journal is strictly peer-reviewed and accepts only original manuscripts submitted in English.
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