在评估新加坡建筑物中眩光引起的不适时,范围效应的检查

IF 2.1 3区 工程技术 Q2 CONSTRUCTION & BUILDING TECHNOLOGY Lighting Research & Technology Pub Date : 2021-12-27 DOI:10.1177/14771535211047220
MG Kent, J. Jakubiec
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引用次数: 7

摘要

这篇文章讨论了新加坡不同建筑的眩光视觉不适等级。这些数据被用来确定如果距离效应影响垂直照度值相同等级的视觉不适,当使用类别评级程序。当建筑物的最大和最小垂直照度(即范围)不同时,就会产生这种效果。我们的分析表明,随着建筑物垂直照度范围的增加,同一视觉不适标准的平均垂直照度值也会增加。结果表明,不同的垂直照度测量范围所造成的影响对视觉不适的评分有偏差。虽然这些影响在一些光线水平差异很大的建筑物中可能是不可避免的,但数据表明,在预测视觉不适时,必须仔细评估垂直照度的总体范围。匹配这些条件可以使垂直照度对眩光引起的不适提供更可靠的评估。
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An examination of range effects when evaluating discomfort due to glare in Singaporean buildings
This article discusses ratings of visual discomfort from glare across different buildings located in Singapore. These data were used to determine if range effects influence the vertical illuminance values for the same ratings of visual discomfort when the category rating procedure is used. The effect occurs when maxima and minima vertical illuminance (i.e. the range) vary across buildings. Our analyses showed that with a higher vertical illuminance range in a building, the mean vertical illuminance value for the same criterion of visual discomfort also increased. The results suggest that the effect caused by different ranges of measured vertical illuminance present across the buildings biased the ratings of visual discomfort. Although these effects may be unavoidable in some buildings that have vastly different levels of light, the data suggest that the overall range of vertical illuminance must be carefully evaluated when predicting visual discomfort. Matching these conditions may enable vertical illuminance to provide more reliable evaluations of discomfort due to glare.
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来源期刊
Lighting Research & Technology
Lighting Research & Technology 工程技术-光学
CiteScore
5.40
自引率
16.00%
发文量
69
审稿时长
>12 weeks
期刊介绍: Lighting Research & Technology (LR&T) publishes original peer-reviewed research on all aspects of light and lighting and is published in association with The Society of Light and Lighting. LR&T covers the human response to light, the science of light generation, light control and measurement plus lighting design for both interior and exterior environments, as well as daylighting, energy efficiency and sustainability
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