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个人使用相变材料进行冷却,从热浪角度提高热舒适感。

Personal cooling with phase change materials to improve thermal comfort from a heat wave perspective.

机构信息

Thermal Environment Laboratory, Division of Ergonomics and Aerosol Technology, Department of Design Sciences, Faculty of Engineering, Lund University, Sweden.

出版信息

Indoor Air. 2012 Dec;22(6):523-30. doi: 10.1111/j.1600-0668.2012.00778.x. Epub 2012 Mar 20.

Abstract

UNLABELLED

The impact of heat waves arising from climate change on human health is predicted to be profound. It is important to be prepared with various preventive measures for such impacts on society. The objective of this study was to investigate whether personal cooling with phase change materials (PCM) could improve thermal comfort in simulated office work at 34°C. Cooling vests with PCM were measured on a thermal manikin before studies on human subjects. Eight male subjects participated in the study in a climatic chamber (T(a) = 34°C, RH = 60%, and ν(a) = 0.4 m/s). Results showed that the cooling effect on the manikin torso was 29.1 W/m(2) in the isothermal condition. The results on the manikin using a constant heating power mode reflect directly the local cooling effect on subjects. The results on the subjects showed that the torso skin temperature decreased by about 2-3°C and remained at 33.3°C. Both whole body and torso thermal sensations were improved. The findings indicate that the personal cooling with PCM can be used as an option to improve thermal comfort for office workers without air conditioning and may be used for vulnerable groups, such as elderly people, when confronted with heat waves.

PRACTICAL IMPLICATIONS

Wearable personal cooling integrated with phase change materials has the advantage of cooling human body's micro-environment in contrast to stationary personalized cooling and entire room or building cooling, thus providing greater mobility and helping to save energy. In places where air conditioning is not usually used, this personal cooling method can be used as a preventive measure when confronted with heat waves for office workers, vulnerable populations such as the elderly and disabled people, people with chronic diseases, and for use at home.

摘要

未加标签

气候变化引起的热浪对人类健康的影响预计将是深远的。重要的是要为社会应对这些影响做好各种预防措施。本研究的目的是调查个人使用相变材料(PCM)进行冷却是否可以改善在 34°C 模拟办公室工作中的热舒适度。在对人体进行研究之前,使用 PCM 的冷却背心在热模型上进行了测量。8 名男性受试者在气候室(T(a) = 34°C,RH = 60%,ν(a) = 0.4 m/s)中参与了研究。结果表明,在等温条件下,对人体模型躯干的冷却效果为 29.1 W/m(2)。在人体模型上使用恒定加热功率模式的结果直接反映了对受试者的局部冷却效果。在人体模型上的结果表明,躯干皮肤温度降低了约 2-3°C,保持在 33.3°C。全身和躯干的热感觉都得到了改善。研究结果表明,使用 PCM 的个人冷却可以作为一种选择,为没有空调的办公人员改善热舒适度,并且在热浪期间可能用于老年人等弱势群体。

实际意义

与固定的个性化冷却和整个房间或建筑物冷却相比,集成相变材料的可穿戴式个人冷却具有冷却人体微环境的优势,从而提供更大的移动性并有助于节省能源。在通常不使用空调的地方,这种个人冷却方法可以作为热浪期间办公人员、老年人和残疾人等弱势群体、慢性病患者以及在家使用的预防措施。

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