三种不同天空条件下百叶遮阳装置和房间朝向的优化

Q2 Energy Journal of Daylighting Pub Date : 2022-08-17 DOI:10.15627/jd.2022.11
R. P. Khidmat, H. Fukuda, B. Paramita, M. Koerniawan, Kustiani - Kustiani
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引用次数: 1

摘要

本文提出了一种参数和多目标优化(MOO)方法,通过结合描绘三种不同天空条件的百叶窗遮阳装置来优化日光和能源消耗:英国伯明翰、印度尼西亚雅加达和澳大利亚悉尼。本研究旨在观察每个给定环境下的最佳百叶窗设计配置。所提出的优化系统将百叶窗遮阳装置的逻辑迭代为动态设计参数,如悬挑、叶片尺寸、间距和叶片旋转,以及房间方向,以实现最大有用日光照度(UDI)和遮阳孔径,同时降低能耗。为了本研究的目的,共对三个城市进行了8509次模拟。MOO的结果表明,伯明翰、雅加达和悉尼的UDI分别提高了80%、146.26%和79.48%,冷却能耗分别提高了28%、3.26%和2.99%。
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The optimization of louvers shading devices and room orientation under three different sky conditions
This paper presents parametric and multi-objective optimization (MOO) approach in optimizing daylight and energy consumption by incorporating louvres shading devices depicting three different sky conditions: Birmingham, UK, Jakarta, Indonesia, and Sydney, Australia. The study aims to observe the best louvre design configuration for each given context. The proposed optimization system iterates the logic of the louvre shading device as the dynamic design parameters such as overhang, blade size, spacing, and blade rotation, together with the room orientation to achieve maximum useful daylight illuminance (UDI) and the shading aperture while simultaneously reduces energy consumption. A total of 8509 simulations for three cities have been run and distributed for the purpose of this research. The results of MOO stated an improvement in UDI for Birmingham, Jakarta, and Sydney of 80%, 146.26%, and 79.48%, and cooling energy consumption of 28%, 3.26%, and 2.99% respectively.
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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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