Daylight performance analysis of a residential building in a tropical climate

IF 8 Q1 ENERGY & FUELS
Kamaraj Kalaimathy , Radhakrishnan Shanthi Priya , Prashanthini Rajagopal , Chandramouli Pradeepa , Ramalingam Senthil
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Abstract

The present study investigates the effects of visible light transmittance in glazing and window-to-wall ratios on the ground floor daylighting performance in a two-storey residential building in a warm-humid climate. The metrics used to optimize daylighting performance with minimal glare are useful daylight illuminance, annual sunlight exposure, and spatial daylight autonomy. The daylighting performance of a residential building is assessed by empirical method and Design-Builder simulation, focusing on overcast sky situations. The useful daylight illuminance is the primary metric for analysing the amount of daylight throughout the year. Annual sunlight exposure and spatial daylight autonomy complement useful daylight illuminance in evaluating the daylighting performance. A window-to-wall ratio of 16%, a visible light transmittance of 0.62, and a glare of 0.52 can meet the daylighting requirements and standards. A design change in the window position helps to obtain annual sunlight exposure within 10% while maintaining high daylighting performance. When installed in the upper position of the wall with a higher sill and lintel height, glazing with a window-to-wall ratio of 16% and a visible light transmittance of 0.62 functions well without creating glare. The significant findings benefit all stakeholders in improving daylighting strategies in tropical climates and satisfying building standards.

热带气候下住宅建筑的日照性能分析
本研究调查了在温暖潮湿的气候下,玻璃中的可见光透射率和窗墙比对两层住宅底层采光性能的影响。用于在眩光最小的情况下优化采光性能的指标包括有用的日光照度、年度阳光照射量和空间日光自主性。以阴天情况为重点,通过经验方法和Design Builder模拟来评估住宅建筑的采光性能。有用的日光照度是分析全年日光量的主要指标。在评估采光性能时,年阳光照射量和空间日光自主性是有用的日光照度的补充。16%的窗墙比、0.62的可见光透射率和0.52的眩光可以满足采光要求和标准。窗户位置的设计变化有助于在保持高采光性能的同时,将年日照量控制在10%以内。当安装在门槛和过梁高度较高的墙壁上部时,窗墙比为16%、可见光透射率为0.62的玻璃窗功能良好,不会产生眩光。这些重要发现有利于所有利益相关者改善热带气候下的采光策略,并满足建筑标准。
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
Energy nexus
Energy nexus Energy (General), Ecological Modelling, Renewable Energy, Sustainability and the Environment, Water Science and Technology, Agricultural and Biological Sciences (General)
CiteScore
7.70
自引率
0.00%
发文量
0
审稿时长
109 days
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