4.7 Article

Thermal comfort performance and energy-efficiency evaluation of six personal heating/cooling devices

期刊

BUILDING AND ENVIRONMENT
卷 217, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.buildenv.2022.109069

关键词

Thermal comfort; Energy conservation; Personal comfort system; Local heating/cooling device

资金

  1. Project of National Natural Sci-ence Foundation of China [52078355, 51578386, 52108086]
  2. special fund of Beijing Key Laboratory of Indoor Air Quality Evaluation and Control [BZ0344KF20-08]

向作者/读者索取更多资源

This study evaluates and compares the thermal comfort effectiveness and energy consumption of six different personal heating/cooling devices. The results show that the heating devices improve subjects' thermal sensation, but their energy efficiency varies greatly. Under hot conditions, desk and floor fans improve thermal accept-ability, while a ventilated cushion cannot enhance thermal comfort. Most subjects prefer heated cushions and floor fans.
Personal Comfort Systems (PCS) have the potential to improve individual thermal satisfaction and reduce energy consumption in buildings, but guidance on their application is still lacking. This study aims to evaluate and compare the thermal comfort effectiveness and energy consumption of six different personal heating/cooling devices (including warm air blower, electric radiant heater, heated cushion, desk fan, floor fan, and ventilated cushion). Twenty-eight college students were recruited to use the heating/cooling devices under cold (18 degrees C) and hot (32 degrees C) conditions, respectively. The results showed that all three heating devices improved subjects' average thermal sensation from cool (-1.96) to neutral (-0.18 - 0.09) under cold condition, while their energy efficiency varied greatly. The warm air blower (420.0 W) and electric radiant heater (630.1 W) consumed significantly more energy than the heated cushion (43.0 W). 67.8% of the subjects chose the heated cushion as their most preferred heating device. Under hot condition, the desk fan and floor fan increased subjects' thermal accept-ability to more than 80%, while ventilated cushion with a maximum airflow rate of 16.5 L/s cannot correct human thermal comfort. All cooling devices based on fans were available with small electric power (3.3-29.9 W). Most subjects (60.7%) preferred the floor fan among the three cooling devices. The advantages and disadvan-tages of each device perceived by the subjects were also investigated through interviews. This work can help researchers further understand the differences between different PCS devices, and guide the optimization and application of PCS devices.

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