Advanced thermal environment and energy consumption calculation over time using combined energy simulation, computational fluid dynamics, and heat source model

被引:2
|
作者
Yamamoto, Tatsuhiro [1 ]
Ozaki, Akihito [2 ]
Aratsu, Keigo [3 ]
机构
[1] Kurume Inst Technol, Architecture & Equipment Engn, Kurume, Kamitsumati 8300052, Japan
[2] Kyushu Univ, Fac Human Environm Studies, Nishi Ku, Fukuoka, Hukuoka, Japan
[3] YKK AP Inc, Chiyoda Ku, Kanda Izumi Cho, Tokyo, Japan
关键词
Heat source model; COP; power consumption; energy simulation; CFD; dehumidification quantification; COUPLED BUILDING ENERGY; OFFICE SPACE; RECOVERY VENTILATOR; SMART; PERFORMANCE; SYSTEMS; WATER; COP;
D O I
10.1080/19401493.2021.1992503
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
We developed an unsteady computational simulation tool that sequentially inputs the calculated heat load to a heat source model to determine the coefficient of performance (COP) and power consumption of air conditioners. The accuracy of the energy consumption prediction was improved by incorporating the air-conditioning model into the coupled calculation of energy simulation and computational fluid dynamics as well as reproducing the behaviour of equipment efficiency. We conducted a comparative study in an office with a partition in the centre to investigate the effects of short circuits and heat accumulation. The experiments indicated a difference between the bulk temperature of the space and the input air humidity of the air conditioner of similar to 2.0 degrees C and 2.5 g/kg (DA), respectively. The coupled analysis confirmed that the power consumption of the bulk temperature/humidity input was similar to 100 W and the COP error was similar to 2, while the suction temperature/humidity input had high accuracy.
引用
收藏
页码:619 / 645
页数:27
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