Improving Thermal Efficiency of Solar Air Collector by Creating Turbulent Flow Using New Baffles Combinations

Z. Aouissi, F. Chabane, M. Teguia
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Abstract

The study shows an experimental investigation for a solar air collector with a single pass by adding rectangular baffles for different positions inside the channel. The aim of this study is to improve the thermal efficiency for this collector, and that through testing four cases of baffles positions (mode 1, 2, 3, 4). The study was done under different operating conditions by changing the mass flow rates and positions of baffles. The results show the effectiveness of the baffles in improving the efficiency of the collector, The study also proved that the baffles positions affect thermal efficiency, where the greatest efficiency was recorded in the fourth mode and then in the positioning of obstacles at the middle of the channel for the mode 2 and the mode 4 with a percentage of 76.61 and 90.9 , at mass flow rate m=0.0522 kg/s, while the pressure drop was very high in the mode 4, and after that the mode 2. Through
利用新型折流板组合产生湍流以提高太阳能空气集热器的热效率
通过在通道内不同位置增加矩形挡板,对单通道太阳能空气集热器进行了实验研究。为了提高集热器的热效率,本研究通过对四种挡板位置(模式1、2、3、4)的测试,通过改变挡板的质量流量和位置,在不同的运行条件下进行研究。结果显示挡板的有效性提高集热器的效率,研究还证明了挡板的位置影响热效率,最大效率的第四模式被记录,然后在定位障碍的中间渠道模式2和4比例为76.61和90.9,质量流率m = 0.0522公斤/ s,而压降非常高的模式4,之后,模式2。通过
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