评估提高能源效率和热舒适度的建筑设计策略:摩洛哥气候区案例研究

IF 1.8 4区 工程技术 Q3 CONSTRUCTION & BUILDING TECHNOLOGY Journal of Building Physics Pub Date : 2024-08-08 DOI:10.1177/17442591241266608
A. Lachir, Abdelhamid Noufid
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引用次数: 0

摘要

在摩洛哥,建筑设计中的能效问题备受关注。本文全面分析了各种设计变量如何影响摩洛哥的能源消耗和热舒适度。我们不是孤立地研究单个设计变量,而是研究这些变量的协同组合。为此,我们开发了多种建筑设计方案,每种方案都采用了不同的设计选项组合,重点关注建筑朝向、窗墙比、建筑围护结构和窗户遮阳。我们使用 EnergyPlus 对所有方案进行了能耗模拟,假设有空调的房屋和有或没有自然通风的自由运行房屋。我们的研究结果表明,建筑设计具有显著提高能源效率和热舒适度的潜力,但并非相同的设计策略就能实现这一点。与最节能的设计方案相比,最不利的设计方案会导致阿加迪尔的能耗增加 237%,伊夫兰的能耗增加 130%。同时,有利于舒适度的设计方案可使阿加迪尔的舒适时数增加 85%,伊夫兰的舒适时数增加 59%。我们确定了最佳建筑设计方案,这些方案可同时提供最高的舒适度和最低的能源需求。这些发现为建筑师提供了宝贵的指导,使他们能够在摩洛哥的所有气候区设计出高性能的建筑。
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Assessment of building design strategies to enhance energy efficiency and thermal comfort: Case study in Morocco’s climate zones
Energy efficiency in the context of building design is a significant concern in Morocco. This paper offers a comprehensive analysis of how various design variables can impact both energy consumption and thermal comfort in the Moroccan context. Rather than isolating individual design variables, we investigate synergistic combinations of these variables. To achieve this, we develop multiple building design scenarios, each employing different combinations of design options, focusing on building orientation, window-to-wall ratio, building envelope construction, and window shading. We use EnergyPlus to conduct energy simulations for all scenarios under the hypothesis of air-conditioned houses and free-running houses with and without natural ventilation. Our results reveal that building design has the potential to significantly enhance energy efficiency and thermal comfort, but not for the same design strategies. In comparison to the most energy-efficient design scenario, the least favorable design scenario can lead to an increase in energy consumption between 237% in Agadir and 130% in Ifrane. Meanwhile, design scenarios favoring comfort can increase the number of comfortable hours by 85% in Agadir and 59% in Ifrane. We identify optimal building design scenarios that simultaneously offer the highest comfort levels with the lowest energy requirements. The findings provide valuable guidance for architects, allowing them to design high-performance buildings in all climate zones in Morocco.
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来源期刊
Journal of Building Physics
Journal of Building Physics 工程技术-结构与建筑技术
CiteScore
5.10
自引率
15.00%
发文量
10
审稿时长
5.3 months
期刊介绍: Journal of Building Physics (J. Bldg. Phys) is an international, peer-reviewed journal that publishes a high quality research and state of the art “integrated” papers to promote scientifically thorough advancement of all the areas of non-structural performance of a building and particularly in heat, air, moisture transfer.
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