A Combined Method for an Exhaustive Investigation of the Anidolic Ceiling Effect on Improving Indoor Office Daylight Quality: an Approach Based on HDR Photography and Subjective Evaluations

Q2 Energy
Safa Daich, Mohamed Yacine Saadi, Barbara E. A. Piga, Ahmed Motie Daiche
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引用次数: 1

Abstract

Lighting quality in office environments is a broad concept that must be taken into account in the design stage to deliver comfortable spaces to reduce workers' stress. Indeed, daylight should be sufficient to perform visual tasks while avoiding excessive brightness, high contrast, or intense sunlight reflections that can cause discomfort glare. This research aims to test the Anidolic Integrated Ceiling (AIC) performance in creating a visually comfortable space by reducing the probability of glare. A combined method was adopted for investigating the influence of the building orientation and the workers' view directions in the different moments of the day in the winter season. Data collection was performed in an experimental environment, i.e., a physical scale model of 1:4 under real sky conditions. Three variables were: (i) the viewer's positions (parallel and face to the window), (ii) the façade orientation, (iii) the time of the day (morning and afternoon). To investigate the correlation between the simulated environment and the subjective comfort, we collected the following data in parallel: illuminance level, Daylight Glare Probability Index (DGIP), Luminance Contrast Ratios (LCR) for assessing the daylighting environments, and people reactions to the lighting setting to evaluate the perceived discomfort glare. The findings indicate that the Anidolic system's performance differs according to the occupant's orientation and her\his visual direction. The performance of the north façade of the case study application in Biskra, Algeria, was the best one. Indeed, the AIC system allows a harmonious luminance distribution without creating discomfort glare. Glare assessment shows that glare is perceived imperceptible in the lateral view (less than 0.30) and varies between imperceptible and perceptible in the parallel view (LCR values between 1:1 and 1:29). The questionnaire results show that the subjects were more satisfied with the luminous atmosphere of the lateral view than the parallel view where people more likely perceived discomfort. The statistical analysis shows that participants' perceptions of contrast and sensitivity to glare have a strong relationship with DGIP and LCR (0.000) and no correlation with illuminance and LCR.
一种基于HDR摄影和主观评价的综合方法,用于详尽研究Anidolic天花板对改善室内办公室日光质量的影响
办公环境中的照明质量是一个广泛的概念,在设计阶段必须考虑到这一概念,以提供舒适的空间来减轻工人的压力。事实上,日光应该足以执行视觉任务,同时避免过度亮度、高对比度或强烈的阳光反射,这些都会导致不适眩光。本研究旨在测试Anidolic集成天花板(AIC)在通过降低眩光概率来创造视觉舒适空间方面的性能。采用组合方法研究了冬季不同时刻建筑朝向和工人视线方向的影响。数据收集是在实验环境中进行的,即在真实天空条件下1:4的物理比例模型。三个变量是:(i)观看者的位置(平行并面向窗户),(ii)立面方向,(iii)一天中的时间(上午和下午)。为了研究模拟环境与主观舒适度之间的相关性,我们平行收集了以下数据:照度水平、日光眩光概率指数(DGIP)、用于评估采光环境的亮度对比度(LCR),以及人们对照明设置的反应,以评估感知到的不适眩光。研究结果表明,Anidolic系统的性能因使用者的方位和视觉方向而异。阿尔及利亚比斯克拉案例研究应用程序的北立面表现最好。事实上,AIC系统可以在不产生不适眩光的情况下实现和谐的亮度分布。眩光评估显示,眩光在横向视图中是不可察觉的(小于0.30),在平行视图中在不可察觉和可察觉之间变化(LCR值在1:1和1:29之间)。问卷调查结果显示,受试者对侧视图的明亮氛围比对平行视图更满意,在平行视图中,人们更有可能感觉到不适。统计分析表明,参与者对眩光的对比度和敏感性与DGIP和LCR(0.000)有很强的关系,而与照度和LCR无关。
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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