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Influence of lighting colour temperature on indoor thermal perception: A strategy to save energy from the HVAC installations

机译:照明色温对室内热感的影响:从HVAC装置中节省能源的策略

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This paper examines how the lighting colour temperature affects indoor thermal comfort. A test room with three separate environments was set and, in each one of them, a lamp with a different colour temperature was positioned to evaluate the influence of a cold, neutral and warm light. The colour temperatures of the used lamps were 11,530K, 4,000 K and 1,772 K respectively. During each test, while complying with the EN 12464-1, a lighting level of 500 lx and a uniformity coefficient higher than or equal to 0.7 were maintained. With an air temperature of about 22 degrees C, 42 people were interviewed and filled a questionnaire structured according to the ISO 10551 to judge the resulting thermal comfort. The study reported a certain influence of the lighting colour temperature on people's thermal perception which was only lower than the one related to the gender. With respect to the ASHRAE 7-point scale, being exposed to the different types of light led to a decrease (0.44 units under cold light) in the mean value of the votes given by the interviewees to judge their thermal perception. Such condition gives the possibility to increase, without varying the thermal perception of the subjects, the air temperature of 1.25 degrees C, 0.46 degrees C and 0.23 degrees C with cold, neutral and warm light respectively. Finally a cross tabulation analysis was performed to compare the votes of the participants before and after they were exposed to the different lights with those predicted by the Predicted Mean Vote (PMV). (C) 2019 Elsevier B.V. All rights reserved.
机译:本文研究了照明色温如何影响室内热舒适度。设置了一个具有三个独立环境的测试室,并在每个环境中放置了具有不同色温的灯,以评估冷,中性和暖光的影响。所用灯的色温分别为11,530K,4,000 K和1,772K。在每次测试过程中,在遵守EN 12464-1的条件下,保持500 lx的照明水平和均匀度系数大于或等于0.7。在大约22摄氏度的气温下,接受了42人的采访,并填写了根据ISO 10551构成的问卷,以判断最终的热舒适性。研究报告指出,照明色温对人们的热感有一定影响,其影响程度仅低于与性别有关的影响。关于ASHRAE 7点制,暴露于不同类型的光下,受访者用来判断他们的热感知的投票平均值下降(在冷光下为0.44个单位)。这样的条件提供了在不改变对象的热感知的情况下分别利用冷,中性和暖光增加1.25摄氏度,0.46摄氏度和0.23摄氏度的气温的可能性。最后,进行了交叉表分析,以比较参与者暴露于不同光照之前和之后的投票与预测平均投票(PMV)所预测的投票。 (C)2019 Elsevier B.V.保留所有权利。

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