窗户遮阳对约旦不同形式住宅热性能的影响

Esra’a Sh. Abbaas, Mazran Ismail, A. Saif, Muhamad Azhar Ghazali
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引用次数: 0

摘要

简介:窗户遮阳被认为是最有效的被动设计方法之一,可以提高室内热性能,最大限度地减少暖通空调的使用并降低能耗。本研究的目的:我们旨在调查约旦安曼三栋不同形式(矩形、L形和U形)的现有住宅楼在炎热干燥的气候下,外窗遮阳对其热性能的影响。方法:将不同长度(0.75米、1.00米和1.25米)的垂直、水平和组合三种遮阳方式引入现有建筑。使用OpenStudio SketchUp 2020插件和EnergyPlus模拟程序研究了这些类型的着色效果。结果:在所有建筑形式中,垂直遮阳都能略微改善室内空气温度,而水平遮阳和组合遮阳则能更显著地改善建筑的热性能。长度为1.25米的组合遮阳在所有建筑中都表现出最佳性能,因为它将室内空气温度降低在2.6–3.3°C的范围内。此外,与没有遮阳的基线情况相比,它通过降低预测平均投票率(PMV)和预测不满意百分比(PPD)来改善似乎更接近舒适区的热感觉。此外,矩形建筑表现出最佳的遮阳效果,室内空气温度下降幅度最大。
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IMPACT OF WINDOW SHADING ON THE THERMAL PERFORMANCE OF RESIDENTIAL BUILDINGS OF DIFFERENT FORMS IN JORDAN
Introduction: Window shading is considered one of the most effective passive design approaches that improves indoor thermal performance, minimizing the usage of HVAC and reducing energy consumption. Purpose of the study: We aimed to investigate the impact of external window shading on thermal performance of three existing residential buildings having different forms (rectangular, L-shaped, and U-shaped) in hot-dry climate in Amman, Jordan. Methods: Three types of shading, namely: vertical, horizontal, and combined, of different lengths (0.75 m, 1.00 m, and 1.25 m) were introduced to the existing buildings. The effect of those types of shading was studied using the OpenStudio SketchUp 2020 plugin and EnergyPlus simulation program. Results: It was established that vertical shading slightly improves the indoor air temperature in all building forms, while horizontal shading and combined shading improve the thermal performance of buildings to a more significant extent. Combined shading of 1.25 m in length shows the optimum behavior in all buildings since it reduces the indoor air temperature in the range of 2.6–3.3°C. Besides, it improves thermal sensation, which seem to be closer to the comfort zone, by reducing the predicted mean vote (PMV) and predicted percentage of dissatisfied (PPD) values as compared with the baseline situation without shading. In addition, the rectangular building demonstrated the best response for shading by showing the largest reduction in the indoor air temperature.
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来源期刊
Architecture and Engineering
Architecture and Engineering Engineering-Architecture
CiteScore
1.80
自引率
0.00%
发文量
26
审稿时长
7 weeks
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