Efficiency Analysis of a Passive Daylighting System Based on Northern Malaysia’s Climate

Mohd Sani Mohamad Hashim, Muhammad Amin Zulkifli Din, Abdul Halim Ismail, Mohd Hafif Basha, Nasrul Amri Mohd Amin, Ng Yi Fei, Muhamad Safwan Muhamad Azmi, Siti Marhainis Othman, Nur Saifullah Kamarrudin
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Abstract

Daylighting design strategy is important in order to have adequate lighting source in a room and necessary to decrease energy consumption for artificial lighting. Passive daylighting system utilizes daylight by collecting, reflecting and diffusing the natural light throughout a given area. The purpose for this study is to monitor, compare and analyse an optimum light pipe system design that can scatter daylight into a room based on three case studies. Lighting analysis was conducted using Autodesk 3ds Max Design software throughout the project based on the actual geographical parameters of Universiti Malaysia Perlis, Malaysia and also using the real sun azimuth on working hours. The results were compared according to the respective designs in order to observe the maximum internal illuminance and the average internal illuminance. The results show that the straight geometry with low aspect ratio produces the highest interior light intensity among other light pipe systems and the average internal illuminance values in the room was able to reach the minimum requirement of a small room which is 200 – 500 lux.
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基于马来西亚北部气候的被动式日光照明系统效率分析
日光照明设计策略对于为房间提供充足的光源和减少人工照明能耗十分重要。被动式日光照明系统通过收集、反射和漫射自然光来利用日光。本研究的目的是根据三个案例研究,监测、比较和分析可将日光散射到房间的最佳光导管系统设计。整个项目使用 Autodesk 3ds Max 设计软件,根据马来西亚 Perlis 大学的实际地理参数和工作时间的真实太阳方位角进行照明分析。根据各自的设计对结果进行了比较,以观察最大内部照度和平均内部照度。结果显示,在其他光导管系统中,低纵横比的直线几何形状产生的室内光照强度最高,室内平均照度值能够达到小型房间的最低要求,即 200 - 500 勒克斯。
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