The Role of Orosi’s Islamic Geometric Patterns in the Building Façade Design for Improving Occupants’ Daylight Performance

Q2 Energy Journal of Daylighting Pub Date : 2020-11-07 DOI:10.15627/jd.2020.18
Seyedeh Nazli Hosseini, S. M. Hosseini, Milad HeiraniPour
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引用次数: 5

Abstract

The form of the building facade significantly affects the amount of useful daylight admitted in the interior space. Striking a balance between the visual comforts of occupants and taking advantage of daylight is always a challenge and, therefore, investigating complex, geometric forms of Orosi patterns can be an effective way of improving visual comfort alongside the aesthetic aspects. Due to intense radiation in the hot and arid climate of Iran, passive strategies were employed for controlling natural light. As a daylight-related component in Iranian vernacular architecture, Orosi offers different functions which are divided into three categories, namely daylight performance, thermal performance, and decorative role. In an attempt to improve indoor daylighting and visual comfort of occupants, this paper investigated, for the first time, the daylight performance of different Islamic geometric patterns (IGPs) used in Orosies with different thicknesses on the West and south facade. To this end, a total number of twelve traditional courtyard houses were studied through a field survey to extract different types of IGPs used in the Orosies. Finally, a grid-based simulation analyzed the indoor daylight conditions through climatic-luminance based metrics. The findings confirmed the daylight performance of the IGPs as a complex geometric form used for the facades. Compared to the base case on the South façade, all the studied patterns offered a significant potential to address the requirements of visual comforts. Additionally, the results revealed the considerable effect of thickness on the daylight performance of IGPs. Based on the results, the 10 and 15 cm thicknesses, showed better results, in comparison with the 5 cm thickness. The 8-Point-Star, as the best choice for the South façade, kept the metrics within an adequate range for occupants. The 8Point-Star provided DA, UDI, EUDI, and sDA values of 80.18%, 76.65%, 12,22%, 44,6 respectively for thicknesses of 10 cm in the bright layer, which is more than twice the UDI value provided by the base model. Furthermore, the results confirmed the poor performance of IGPs on the West façade, particularly with thicknesses of 10 and 15 cm. The 8-Point-Star and 8-Fold-Rossette, as the best choices, improved the daylight performance of the West façade and prevented visual discomfort for occupants. © 2020 The Author(s). Published by solarlits.com. This is an open access article under the CC BY license (https://creativecommons.org/licenses/by/4.0/).
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Orosi的伊斯兰几何图案在改善居住者日光性能的建筑立面设计中的作用
建筑立面的形式会显著影响室内空间的可用日光量。在居住者的视觉舒适性和利用日光之间取得平衡始终是一项挑战,因此,研究复杂的奥罗西图案几何形状可能是在美学方面提高视觉舒适性的有效方法。由于伊朗炎热干旱的气候中有强烈的辐射,因此采用了被动策略来控制自然光。作为伊朗本土建筑中与日光有关的组成部分,奥罗西提供了不同的功能,分为三类,即日光性能、热性能和装饰作用。为了提高室内采光和居住者的视觉舒适性,本文首次研究了西立面和南立面不同厚度的奥罗西人使用的不同伊斯兰几何图案(IGP)的日光性能。为此,通过实地调查,对总共12栋传统庭院住宅进行了研究,以提取奥罗西人使用的不同类型的IGP。最后,基于网格的模拟通过基于气候亮度的指标分析了室内日光条件。研究结果证实了IGP的日光性能是一种用于立面的复杂几何形状。与南立面的基本案例相比,所有研究的图案都具有满足视觉舒适要求的巨大潜力。此外,研究结果还揭示了厚度对IGP日光性能的显著影响。基于结果,与5cm厚度相比,10cm和15cm厚度显示出更好的结果。作为南立面的最佳选择,8点星型将指标保持在适合居住者的范围内。对于明亮层中10cm的厚度,8Point Star提供的DA、UDI、EUDI和sDA值分别为80.18%、76.65%、12,22%和44,6,这是基础模型提供的UDI值的两倍多。此外,研究结果证实了IGP在西立面上的较差性能,尤其是厚度为10厘米和15厘米的IGP。作为最佳选择,8角星型和8折Rossette型改善了西立面的日光性能,并防止了居住者的视觉不适。©2020作者。由solarlists.com发布。这是一篇基于CC by许可证的开放访问文章(https://creativecommons.org/licenses/by/4.0/)。
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
Journal of Daylighting
Journal of Daylighting Energy-Renewable Energy, Sustainability and the Environment
CiteScore
4.00
自引率
0.00%
发文量
18
审稿时长
10 weeks
期刊介绍: Journal of Daylighting is an international journal devoted to investigations of daylighting in buildings. It is the leading journal that publishes original research on all aspects of solar energy and lighting. Areas of special interest for this journal include, but are not limited to, the following: -Daylighting systems -Lighting simulation -Lighting designs -Luminaires -Lighting metrology and light quality -Lighting control -Building physics - lighting -Building energy modeling -Energy efficient buildings -Zero-energy buildings -Indoor environment quality -Sustainable solar energy systems -Application of solar energy sources in buildings -Photovoltaics systems -Building-integrated photovoltaics -Concentrator technology -Concentrator photovoltaic -Solar thermal
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