共 11 条
Performance optimization of flat plate solar collector through the integration of different slats arrangements made of transparent insulation material
被引:26
作者:
Ammar, Marwa
[1
]
Mokni, Ameni
[1
]
Mhiri, Hatem
[1
]
Bournot, Philippe
[2
]
机构:
[1] Natl Sch Engn Monastir, Lab Thermal & Thermodynam Ind Proc, Rd Ouardanine, Monastir 5000, Tunisia
[2] Aix Marseille Univ, CNRS, IUSTI, Marseille, France
关键词:
Solar Flat Plate Air Collector;
Transparent Insulation Material Parallel Slats (TIM-PS);
Effective efficiency;
Natural convection;
Computational fluid dynamics (CFD);
NATURAL-CONVECTION;
AIR COLLECTOR;
HEAT-LOSS;
EFFICIENCY;
RADIATION;
ROWS;
D O I:
10.1016/j.seta.2021.101237
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Concerns about sustainability of solar energy have resulted in continuous efforts to improve the performance of flat plate solar air collector. The most advanced collector must provide the highest thermal efficiency and satisfy strict requirements for low weight, ease of manufacture and low cost. The purpose of this new study is to examine potential improvements in the performance of flat plate solar air collector. An innovative facade collector, with transparent insulation material (TIM) parallel slats is presented. A numerical modelling of new designed solar air collector was conducted. The performance of this collector was investigated using a three-dimension simulation model, following steady state. Thermal, thermo-hydraulic and exergy efficiencies of the collector containing (TIM-PS) system with different slats; number, height, materials, as well as the slats tilt angle and collector tilt angle (0 degrees,30 degrees,45 degrees,90 degrees) are studied. The CFD predictions show that, the incorporation of TIM-PS decreases the thermal losses, leading to higher efficiencies. This study has realized the most promising and most efficiently optimized design of the 45 degrees tilted collector equipped with 6 TIM-PS tilted by 45 degrees, this new FPC is capable of achieving 81% thermal efficiency. The new design presented in this study, deserves further exploitation as it seems to be a promising alternative for increasing thermal efficiency with a low cost and weight. It could be used in industrial and domestic applications.
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页数:19
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