Biomimicry as an Approach to Improve Daylighting Performance in Office Buildings in Assiut City, Egypt

Q2 Energy
Fayrouz H. F. Hassan, Khaled A. Y. Ali, Salwa A. M. Ahmed
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引用次数: 1

Abstract

Biomimicry inspired architects to solve complex design problems and develop adaptive solutions for enhancing the environmental quality. Fields of inspiration include energy efficiency, natural ventilation, daylighting, and structural stability. In this paper, 144 biomimicry-inspired building skin alternatives have been developed to improve daylighting performance in office buildings in Assiut City, Egypt; 72 alternatives are of 0.5 m frame depth, and other 72 alternatives are of 1.0 m frame depth. Two levels of biomimicry; namely, the organism level (snakeskin) and the behavior level (plants tropism), have been adopted. Alternatives have been developed to be simulated ClimateStudio plug-in for Rhino in accordance with the international rating system leadership in energy and environmental design (LEED v4.1). The evaluation criteria are spatial Daylight Autonomy (sDA), Annual Sunlight Exposure (ASE), Annual Average Lux (AAl), and Spatial Distributing Glare (sDG). An evaluation point system has been developed to evaluate alternatives using Analytical Hierarchy Process (AHP) based on the feedback of 14 faculty of architecture members. Nine building skin alternatives developed succeeded to achieve notable improvement (from 16.69% to 33.73%) compared to the base cases. In general, the 1.0 m frame-depth alternatives achieved better results in improving daylighting performance than the 0.5 m frame-depth alternatives. The most effective parameter in improving daylighting performance was the rotation angle of the skin unit used, to be followed by the distance between the skin and the building façade, the solid-to-void ratio of the skin, the number of units constituting the skin system, and the horizontal bending distance of the skin unit, respectively.
生物仿制品作为提高埃及阿西尤特市办公楼采光性能的一种方法
仿生启发建筑师解决复杂的设计问题,并开发适应性的解决方案来提高环境质量。灵感领域包括能源效率、自然通风、采光和结构稳定性。本文开发了144种仿生建筑表皮替代品,以改善埃及阿西尤特市办公楼的采光性能;72个备选方案的框架深度为0.5米,其他72个备选备选方案的框深度为1.0米。仿生学的两个层次;即生物水平(蛇皮)和行为水平(植物向性)。根据国际能源和环境设计评级系统领先地位(LEED v4.1),已经为Rhino开发了模拟ClimateStudio插件的替代方案。评估标准为空间日光自主性(sDA)、年阳光照射量(ASE)、年平均照度(AAl)和空间分布眩光(sDG)。基于14名建筑学院成员的反馈,使用层次分析法(AHP)开发了一个评估点系统来评估备选方案。与基本情况相比,开发的九种建筑皮肤替代品成功实现了显著改善(从16.69%提高到33.73%)。一般来说,1.0 m框架深度备选方案在改善采光性能方面比0.5 m框架深度方案取得了更好的效果。提高采光性能的最有效参数是使用的蒙皮单元的旋转角度,其次是蒙皮与建筑立面之间的距离、蒙皮的固空比、构成蒙皮系统的单元数量和蒙皮单元的水平弯曲距离。
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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