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Experimental investigation on thermal comfort model between local thermal sensation and overall thermal sensation

机译:局部热感与整体热感之间热舒适模型的实验研究

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摘要

To study the human local and overall thermal sensations, a series of experiments under various conditions were carried out in a climate control chamber. The adopted analysis method considered the effect of the weight coefficient of local average skin temperature and density of the cold receptors' distribution in different local body areas. The results demonstrated that the thermal sensation of head, chest, back and hands is warmer than overall thermal sensation. The mean thermal sensation votes of those local areas were more densely distributed. In addition, the thermal sensation of arms, tight and calf was colder than the overall thermal sensation, which pronounced that thermal sensation votes were more dispersed. The thermal sensation of chest and back had a strong linear correlation with overall thermal sensation. Considering the actual scope of air-conditioning regulation, the human body was classified into three local parts: a) head, b) upper part of body and c) lower part of body. The prediction model of both the three-part thermal sensation and overall thermal sensation was developed. Weight coefficients were 0.21, 0.60 and 0.19 respectively. The model provides scientist basis for guiding the sage installation place of the personal ventilation system to achieve efficient energy use. (C) 2017 Elsevier B.V. All rights reserved.
机译:为了研究人类的局部和整体热感,在气候控制室内进行了各种条件下的一系列实验。采用的分析方法考虑了局部平均皮肤温度的权重系数和不同部位局部感冒受体分布密度的影响。结果表明,头部,胸部,背部和手部的热感比整体热感要热。这些局部区域的平均热感投票分布更为密集。此外,手臂,小腿和小腿的热感比整体热感冷,这表明热感票更分散。胸部和背部的热感与整体热感之间存在很强的线性相关性。考虑到空调调节的实际范围,人体分为三个局部部分:a)头部,b)身体上部和c)身体下部。建立了三部分热感和整体热感的预测模型。权重系数分别为0.21、0.60和0.19。该模型为指导个人通风系统的明智安装位置以实现有效的能源利用提供了科学家依据。 (C)2017 Elsevier B.V.保留所有权利。

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