An integrated computational method for calculating dynamic thermal bridges of building facades in tropical countries

IF 3.1 1区 艺术学 0 ARCHITECTURE Frontiers of Architectural Research Pub Date : 2023-12-12 DOI:10.1016/j.foar.2023.11.003
Miktha Farid Alkadri , Muhammad Rafif Cahyadi Agung , Francesco De Luca
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Abstract

Identifying thermal bridges on building façades has been a great challenge for architects, especially during the conceptual design stage. This is not only due to the complexity of parameters when calculating thermal bridges, but also lack of feature integration between building energy simulation (BES) tools and the actual building conditions. For example, existing BES tools predominantly calculate thermal bridges only in steady state without considering the temperature dynamic behaviour of building outdoors. Consequently, relevant features such as thermal delay, decrement factor, and operative temperature are often neglected, and this can lead to miscalculation of energy consumption. This study then proposes an integrated method to calculate dynamic thermal bridges under transient conditions by incorporating field observations and computational simulations of thermal bridges. More specifically, the proposed method employs several measurement tools such as HOBO data logger to record the actual conditions of indoor and outdoor room temperature and thermal cameras to identify the surface temperature of selected building junctions. The actual datasets are then integrated with the simulation workflow developed in BES tools. This study ultimately enables architects not only to identify potential thermal bridges on existing building façades but also to support material and geometric exploration in early design phase.

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计算热带国家建筑外墙动态热桥的综合计算方法
识别建筑外墙的热桥一直是建筑师面临的巨大挑战,尤其是在概念设计阶段。这不仅是因为计算热桥时参数的复杂性,还因为建筑能耗模拟(BES)工具与实际建筑条件之间缺乏功能集成。例如,现有的 BES 工具主要只计算稳定状态下的热桥,而不考虑建筑室外的温度动态行为。因此,热延迟、递减因子和工作温度等相关特征往往被忽视,从而导致能耗计算错误。因此,本研究提出了一种综合方法,通过结合热桥的实地观测和计算模拟,计算瞬态条件下的动态热桥。具体来说,该方法采用了多种测量工具,如 HOBO 数据记录器记录室内外室温的实际情况,以及热像仪识别选定建筑交界处的表面温度。然后将实际数据集与 BES 工具中开发的模拟工作流程进行整合。这项研究最终不仅能帮助建筑师识别现有建筑外墙上潜在的热桥,还能为早期设计阶段的材料和几何探索提供支持。
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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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