热舒适性
环境科学
辐射冷却
热的
工作温度
过热(电)
气象学
湿球球温度
暖通空调
平均辐射温度
辐射采暖
大气科学
空气温度
空调
工程类
热力学
地理
机械工程
气候变化
物理
地质学
电气工程
海洋学
作者
Heng Du,Zhiwei Lian,Dayi Lai,Lin Duanmu,Yongchao Zhai,Bin Cao,Yufeng Zhang,Xiang Zhou,Zhaojun Wang,Xiaojing Zhang,Zhijian Hou
标识
DOI:10.1016/j.buildenv.2021.108685
摘要
This paper compares indoor thermal environment and thermal comfort between radiant and convective systems in continuous operating mode using large field test samples from the Chinese Thermal Comfort Database. Hypothesis tests are performed to compare thermal environment parameters and human subjective responses. We are concerned not only with statistical significance (P-value), but also with the effect size (d), since a small size effect would not have any practical significance. There is evidence of overheating of radiant systems due to high air temperature during heating season. There is no practical difference in air temperature between the two systems during cooling season. Indexes of radiant temperature asymmetry, vertical air temperature difference, air velocity and floor surface temperature are analyzed and compared. There is little practical difference in thermal comfort vote between the two systems at the same PMV interval. The neutral temperature difference is within 1.1 °C during heating season and is within 0.3 °C during cooling season between the two systems, which are narrower than the GB50376-2012 (2 °C during heating season and 0.5–1.5 °C during cooling season). This paper can provide reference for thermal environment design and thermal comfort evaluation under different HVAC systems.
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