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Corrugated transpired solar collectors: Mathematical modeling, experimental investigation, and performance analysis
被引:5
|作者:
Li, Shengteng
[1
]
Lin, Wenye
[1
]
Gong, Xuemei
[2
]
Sun, Yongjun
[3
]
Ma, Zhenjun
[1
]
机构:
[1] Univ Wollongong, Sustainable Bldg Res Ctr, Wollongong, NSW 2522, Australia
[2] Ningbo Univ Technol, Bldg Energy Conservat Res Inst, Ningbo 315211, Peoples R China
[3] City Univ Hong Kong, Div Bldg Sci & Technol, Hong Kong, Peoples R China
来源:
关键词:
Mathematical modeling;
Solar heating;
Transpired solar collector;
Corrugated surface;
Thermal performance;
PHOTOVOLTAIC THERMAL-SYSTEMS;
HEAT-TRANSFER;
AIR-FLOW;
OPTIMIZATION;
SIMULATION;
D O I:
10.1016/j.solener.2023.111839
中图分类号:
TE [石油、天然气工业];
TK [能源与动力工程];
学科分类号:
0807 ;
0820 ;
摘要:
This paper developed a new mathematical model for transpired solar collectors (TSC) which better considered radiative heat transfer of the corrugated absorber. The model offers flexibility to simulate different scenarios, such as using flat plate or corrugated absorbers, and the introduction of extra airflow from outdoor or indoor air. The model was first validated against the experimental data and was then used to quantify the impact of different influential factors on the thermal performance of the TSC. The model can provide reliable estimates with an average R-squared of 0.96. The opening angle of the corrugated absorber and the introduction of indoor air to the air channel of the TSC showed the largest impact on the overall performance among the factors considered. Using corrugated TSCs with an opening angle of 60 degrees could result in average thermal efficiency of 82.31% while that using the flat plate TSC was 80.80%. The introduction of indoor air (i.e. 24 degrees C) to the air channel improved the outlet air temperature of corrugated TSCs by 1.5 degrees C during the daytime when the total flow rate was 300 L/s. The findings from this work could be used to facilitate the design and optimization of TSCs with corrugated absorbers.
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页数:16
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