外部遮阳系统的声学和采光效果

Q1 Engineering
S. Secchi, P. Fausti, G. Cellai, Martina Parente, A. Santoni, Nicolò Zuccherini Martello
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引用次数: 0

摘要

外部遮阳装置越来越多地用于可持续建筑中,以减少夏季的温室效应和通过透明表面直接照射太阳产生的眩光效应。最近的研究已经对这些设备的声学效果进行了研究,这些研究表明,即使在窗户打开的情况下,也有可能优化这些元件,以提高室内环境中的声学舒适性。然而,很少有研究分析这些设备对声学衰减和改善采光的综合影响。本文报道了考虑不同尺寸、百叶窗距离和立面方向的声学和采光模拟结果。还简要总结了以前关于用吸声材料在每个百叶窗底面内衬的效果的主要工作结果。百叶窗不同配置的声学效果根据立面中的插入损耗进行评估。对于照明模拟(日光系数、采光均匀性和日光眩光概率),考虑到欧洲南部不同时间和季节的百叶窗之间的间距和立面方向,研究了屏蔽效果的变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The acoustic and daylighting effects of external façade sun shading systems
External sun shading devices are increasingly used in sustainable buildings to reduce the greenhouse effect in the summer and the glare effect due to direct solar irradiation through transparent surfaces. The acoustic effects of these devices have been investigated in recent studies that suggest the possibility of optimising these elements to improve acoustic comfort in indoor environments, even with open windows. Nevertheless, there are few studies that analyse the combined effect of these devices on acoustic attenuation and improved daylighting.  In this paper, the results of acoustics and daylighting simulations are reported, considering different dimensions, distances of the louvres and orientations of the façade. The main results of previous works concerning the effect of lining the bottom side of each louvre with sound-absorbing material are also briefly summarised. The acoustic effects of different configurations of the louvres are evaluated in terms of Insertion Loss in the façade plane. For the lighting simulations (daylight factor, daylighting uniformity and daylight glare probability), the variation of the shielding effect is studied considering the spacing between the louvres and the orientation of the façade for different times and seasons for latitude in the South of Europe.
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来源期刊
Journal of Facade Design and Engineering
Journal of Facade Design and Engineering Engineering-Architecture
CiteScore
1.90
自引率
0.00%
发文量
3
审稿时长
12 weeks
期刊介绍: The Journal of Facade Design and Engineering presents new research results and new proven practice in the field of facade design and engineering. The goal is to improve building technologies, as well as process management and architectural design. This journal is a valuable resource for professionals and academics involved in the design and engineering of building envelopes, including the following disciplines: Architecture Façade Engineering Climate Design Building Services Integration Building Physics Façade Design and Construction Management Novel Material Applications. The journal will be directed at the scientific community, but it will also feature papers that focus on the dissemination of science into practice and industrial innovations. In this way, readers explore the interaction between scientific developments, technical considerations and management issues.
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