Analysis of transparent building envelope renovations for indoor thermal comfort in an educational building

IF 1.5 4区 经济学 0 ARCHITECTURE
Dinçer Aydın, Şule YILMAZ ERTEN
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Abstract

PurposeThe buildings should be designed by respecting the environmental and climatic conditions they are in and their orientation. Then, the characteristics of the building envelope (BE) play an important role in building energy consumption and user comfort. In fact, the type and material of glazing is one of the crucial parameters for BE. The transparency ratio of BE also determines the façade performance. The aim of this study is to analyze the different renovation scenarios for BE with high transparency of an educational building (EB) in hot summer weather to obtain indoor thermal comfort (ITC) for users.Design/methodology/approachThe methodology includes thorough measurement of existing ITC using TESTO-440 and simulation of each retrofit scenario using DesignBuilder building energy modeling (BEM) simulation software with Energyplus to determine optimal thermal comfort. Since the study focuses on the impact of the transparent BE on summer ITC, four main scenarios, naturally ventilated (NV) façade, film-coated glass façade, replacement of glazing with opaque units, sun-controlled façade with overhang and solar shading, were simulated. The results were analyzed comparatively on both performance and cost to find the best renovation solutions.FindingsA total of 7 different renovation scenarios were tested. Simulation results show that passive systems such as NV have limited contribution to indoor air temperature (IAT) improvement, achieving only a 4 °C reduction while offering the lowest cost. A film coating resulted in a reduction of 3–6 °C, but these applications have the highest cost and least impact on ITC. It was found that exterior coating leads to better results in film coating. Preventing and limiting the increase in IAT was achieved by reducing the transparency ratio of BE. The best results were obtained in these scenarios, and it was possible to reduce IAT by more than 10 °C. The best performance/cost value were also obtained by decreasing transparency ratio of roof and sun control.Research limitations/implicationsSince the high transparency ratio has a negative impact on summer comfort, especially in hot climate zones, summer ITC was prioritized in the renovation solutions for the case building.Originality/valueThe study’s findings present a range of solutions for improving the ITC of highly transparent buildings. The solutions can help building managers see the differences in renovation costs and their impacts on ITC to decrease the cooling load of the existing buildings.
某教育建筑透明围护结构改造对室内热舒适性的影响分析
建筑的设计应尊重其所处的环境和气候条件及其朝向。因此,建筑围护结构的特性对建筑能耗和用户舒适度有着重要的影响。事实上,玻璃的类型和材料是BE的关键参数之一。BE的透明度也决定了其表面性能。本研究的目的是分析在炎热的夏季,某教育建筑(EB)高透明度BE的不同改造方案,以获得用户的室内热舒适(ITC)。该方法包括使用睾丸激素-440对现有ITC进行彻底测量,并使用DesignBuilder建筑能源建模(BEM)模拟软件与Energyplus对每个改造方案进行模拟,以确定最佳的热舒适性。由于研究的重点是透明BE对夏季ITC的影响,因此模拟了四种主要场景,即自然通风(NV)幕墙、膜涂玻璃幕墙、用不透明单元替换玻璃、带有悬垂和遮阳的日光控制幕墙。对结果进行了性能和成本的对比分析,以寻找最佳的改造方案。总共测试了7种不同的改造方案。仿真结果表明,被动系统(如NV)对室内空气温度(IAT)改善的贡献有限,在提供最低成本的情况下仅降低4°C。薄膜涂层导致温度降低3-6°C,但这些应用成本最高,对ITC的影响最小。结果表明,采用外涂法涂膜效果较好。通过降低BE的透明度来预防和限制IAT的增加。在这些情况下获得了最佳结果,并且有可能将IAT降低10°C以上。通过降低屋顶的透明度和控制阳光,也获得了最佳的性能/成本价值。由于高通透率对夏季舒适性有负面影响,特别是在炎热的气候地区,因此在案例建筑的改造解决方案中,夏季ITC是优先考虑的。独创性/价值研究结果提出了一系列解决方案,以改善高度透明建筑的创新设计。这些解决方案可以帮助建筑管理者了解改造成本的差异及其对ITC的影响,以减少现有建筑的冷负荷。
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
2.30
自引率
18.20%
发文量
48
期刊介绍: The journal of an association of institues and individuals concerned with housing, design and development in the built environment. Theories, tools and pratice with special emphasis on the local scale.
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