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The effectiveness of light-emitting diode lighting for providing circadian stimulus in office spaces while minimizing energy use

机译:发光二极管照明在办公室空间中提供昼夜节律刺激的功效,同时最大程度地减少了能源消耗

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摘要

Architectural lighting has traditionally addressed visual performance and horizontal illuminance on the work plane, later focussing on energy efficiency, while only recently paying particular regard to human health outcomes. The present study evaluated the effectiveness of several light-emitting diode lighting strategies for delivering circadian stimulus to occupants of a typical office space while minimizing energy use. The study employed photometric simulations in a typical open-office space, delivering a criterion circadian stimulus of 0.3 to calculation points modelled at the simulated occupants' eye level. Six luminaire types, two luminous intensity distributions, six spectral power distributions and two horizontal illuminances were evaluated, resulting in 144 unique lighting conditions. Additionally, the study calculated the discomfort glare for selected luminaires with the highest total lumen output, smallest aperture and direct-only luminous intensity distributions at the higher of the two horizontal illuminances (500 lx). The most impactful strategy involved supplementing common overhead lighting with a desktop luminaire delivering light directly to the simulated office occupants' eyes, which provided greater circadian stimulus and used less energy than overhead luminaires that were capable of delivering the criterion circadian stimulus of 0.3.
机译:传统上,建筑照明解决了工作平面上的视觉性能和水平照度问题,后来重点关注能源效率,而直到最近才特别关注人类健康的结果。本研究评估了几种发光二极管照明策略的有效性,这些策略可将昼夜节律刺激传递给典型办公空间的居住者,同时最大程度地减少能源消耗。这项研究在一个典型的办公室空间中进行了光度模拟,将0.3的昼夜节律刺激传递给以模拟乘员的视线水平建模的计算点。评估了六种照明器类型,两种发光强度分布,六种光谱功率分布和两种水平照度,从而产生了144种独特的照明条件。此外,研究还计算了在两个水平照度较高者(500 lx)中较高的情况下,具有最高总流明输出,最小孔径和仅直接发光强度分布的选定照明设备的不适感。最有影响力的策略是用台式灯具补充普通的顶置照明,该台式灯具将光直接传递给模拟办公室的人的眼睛,与能够提供0.3昼夜标准的标准顶置灯具相比,它提供了更大的昼夜节律刺激和更少的能源消耗。

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  • 来源
    《Lighting Research & Technology》 |2020年第2期|167-188|共22页
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    Lighting Research Center Rensselaer Polytechnic Institute Troy NY USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-18 05:17:56

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