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A novel theoretical method for predicting the effects of lighting colour temperature on physiological responses and indoor thermal perception

机译:一种新的理论方法,用于预测照明色温对生理反应和室内热感性的影响

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摘要

The neural integration of information from different sensory modalities, known as multisensory integration, is a phenomenon that can affect people's thermal perception. Previous experimental research validated the hue-heat hypothesis as one of the contexts of multisensory integration. The present research introduces the equivalent metabolic rate as a novel parameter to include the hue-heat effects in conventional thermal comfort models. To this aim, an analytical expression was developed for calculating the equivalent metabolic rate according to the correlated colour temperature (CCT) of the ambient light and implemented in both steady and transient thermal comfort models. The modified models were validated against published experimental data. The effects of lighting colour on physiological responses and thermal perception were then investigated for four different CCTs under three different indoor temperatures. The simulated results showed that any deviation from CCT 5000 K evokes thermophysiological responses and alters the people's thermal sensation compared to what is expected by standard thermal comfort models. The maximum and minimum lighting effects were observed at 4000 K and 6500 K CCT, respectively. The results also showed that thermal perception is more sensitive to CCT changes in warm environments. Furthermore, it is predicted that the thermal sensation could be changed up to 0.8 units by changing the lighting colour, while the skin temperature and wettedness could change up to 0.8 degrees C and 0.14, respectively. This paper demonstrates that the novel equivalent metabolic rate parameter can be successfully used to predict the thermal sensation under varying lighting environments, making a substantial contribution to multisensory integration.
机译:来自不同感官模型的信息的神经整合,称为多句子集成,是一种可能影响人们的热敏感知的现象。以前的实验研究将色调 - 热假设验证为多级别集成的背景之一。本研究介绍了作为一种新参数的等效代谢率,以包括传统热舒适模型中的色调热效应。为此目的,开发了一种分析表达,用于根据环境光的相关色温(CCT)计算等效代谢速率,并在稳态和瞬态的热舒适模型中实现。修改模型针对已发布的实验数据验证。然后在三种不同室内温度下研究了照明颜色对生理反应和热感知的影响。模拟结果表明,与标准热舒适模型的预期相比,来自CCT 5000 K的任何偏差唤起热性质反应并改变人们的热敏。分别以4000k和6500 k CCT观察到最大和最小照明效果。结果还表明,热感知对温暖环境中的CCT变化更敏感。此外,预测热敏通过改变照明颜色可以改变为0.8个单元,而皮肤温度和湿度可以分别改变为0.8℃和0.14。本文表明,新颖的等效代谢率参数可以成功地用于预测变化照明环境下的热敏,对多福管集成进行了大量贡献。

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