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Human thermal sensation and comfort in a non-uniform environment with personalized heating

机译:带有个性化加热的非均匀环境中的人体热感和舒适性

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Background: Thermal comfort in traditionally uniform environment is apparent and can be improved by increasing energy expenses. To save energy, non-uniform environment implemented by personalized conditioning system attracts considerable attention, but human response in such environment is unclear. Objectives: To investigate regional- and whole-body thermal sensation and comfort in a cool environment with personalized heating. Methods: In total 36 subjects (17 males and 19 females) including children, adults and the elderly, were involved in our experiment Each subject was first asked to sit on a seat in an 18 ℃ chamber (uniform environment) for 40 min and then sit on a heating seat in a 16 ℃ chamber (non-uniform environment) for another 40 min after 10 min break. Subjects' regional- and whole-body thermal sensation and comfort were surveyed by questionnaire and their skin temperatures were measured by wireless sensors. We statistically analyzed subjects' thermal sensation and comfort and their skin temperatures in different age and gender groups and compared them between the uniform and non-uniform environments. Results: Overall thermal sensation and comfort votes were respectively neutral and just comfortable in 16 ℃ chamber with personalized heating, which were significantly higher than those in 18 ℃ chamber without heating (p < 0.01). The effect of personalized heating on improving thermal sensation and comfort was consistent in subjects of different age and gender. However, adults and the females were more sensitive to the effect of personalized heating and felt cooler and less comfort than children/elderly and the males respectively. Variations of the regional thermal sensation/comfort across human body were consistent with those of skin temperature. Conclusions: Personalized heating significantly improved human thermal sensation and comfort in non-uniform cooler environment, probably due to the fact that it increased skin temperature. However, the link between thermal sensation/comfort and variations of skin temperature is rather complex and warrant further investigation.
机译:背景:在传统上统一的环境中,热舒适感是显而易见的,可以通过增加能源消耗来改善。为了节省能量,通过个性化调节系统实现的非均匀环境吸引了相当多的关注,但是在这种环境下人类的反应尚不清楚。目标:在个性化加热的凉爽环境中研究区域和全身的热感和舒适性。方法:总共36名受试者(男17例,女19例),包括儿童,成人和老人,都参与了我们的实验。首先让每个受试者在18℃的室内(均匀环境)的座位上坐40分钟,然后休息10分钟后,再在16℃的室内(非均匀环境)的加热座上再坐40分钟。通过问卷调查对象的区域和全身热感和舒适度,并通过无线传感器测量他们的皮肤温度。我们对不同年龄和性别组的受试者的热感觉和舒适度以及他们的皮肤温度进行了统计分析,并在均匀和不均匀的环境之间进行了比较。结果:在有个性化加热的16℃室内,总的热感和舒适感分别为中性和舒适度,显着高于没有加热的18℃室内(p <0.01)。在不同年龄和性别的受试者中,个性化加热对改善热感和舒适感的作用是一致的。但是,成年人和女性分别比儿童/老人和男性对个性化加热的效果更敏感,感到凉爽且舒适感较差。整个人体的局部热感觉/舒适度的变化与皮肤温度的变化一致。结论:个性化加热可在不均匀的凉爽环境中显着改善人体的热感和舒适度,这可能是由于它会升高皮肤温度。然而,热感觉/舒适感和皮肤温度变化之间的联系相当复杂,需要进一步研究。

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