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Thermal performance of flat plate solar collector using various arrangements of compound honeycomb

机译:各种复合蜂窝状平板太阳能集热器的热性能

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This paper presents the results of an experimental investigation of the performance of a solar collector outfitted with honeycomb of different arrangements. A complete collector test facility equipped with data acquisition system has been assembled and tested for this purpose. A flat plate solar collector, of 2 m~2 area and 60 mm air gap, has been designed and constructed. The adapted honeycomb unit is structured from polycarbonate sheet of 16 mm thickness containing two rows of honeycomb cells with longitudinal aspect ratio of 0.4. The effect of gap thickness above, below or between the honeycomb units is examined using single or double units of honeycomb. Six arrangements of the single honeycomb unit (SHU), with bottom gaps of 0, 3, 8, 14, 22 and 36 mm, are tested. Six other arrangements of double honeycomb units with different top, middle and bottom gaps are investigated. The experimental data along with correlations obtained by linear regression are presented. The effect of gap thickness for the collector fitted with SHU indicates that the bottom gap is crucial with respect to the heat loss coefficient. The arrangement of single honeycomb with bottom gap of 3 mm is the optimum, as it offers the highest efficiency between all the arrangements and the lowest heat loss coefficient among the other honeycomb arrangements. The results for the collector equipped with two honeycomb units reveal less sensitivity of the heat loss coefficients to variations of the top or middle gaps. Comparing the results obtained for single and double honeycomb units revealed that a compound honeycomb solar collector with air gaps of the right thickness above and below the SHU enhances the collector performance considerably. Also, it affords substantial conservation of honeycomb material because its thickness is about 25% of the total air gap.
机译:本文介绍了对装有不同布置的蜂窝状太阳能收集器的性能进行实验研究的结果。为此,已经组装并测试了配备有数据采集系统的完整的采集器测试设备。设计并制造了一种平板太阳能收集器,其面积为2 m〜2,空气间隙为60 mm。适应的蜂窝单元由16mm厚的聚碳酸酯板构成,该聚碳酸酯板包含两排纵向纵横比为0.4的蜂窝单元。使用单个或两个蜂窝单元检查间隙厚度在蜂窝单元上方,下方或之间的影响。测试了单个蜂窝单元(SHU)的六个布置,底部间隙为0、3、8、14、22和36 mm。研究了具有不同顶部,中间和底部间隙的双蜂窝单元的其他六种布置。介绍了实验数据以及通过线性回归获得的相关性。间隙厚度对装有SHU的集热器的影响表明,底部间隙对于热损失系数至关重要。底部间隙为3 mm的单个蜂窝状布置是最佳的,因为它在所有布置之间提供了最高的效率,而在其他蜂窝布置中却提供了最低的热损失系数。装有两个蜂窝单元的集热器的结果表明,热损失系数对顶部间隙或中间间隙变化的敏感性较低。比较单蜂窝单元和双蜂窝单元获得的结果,发现在SHU上方和下方具有合适厚度气隙的复合蜂窝太阳能集热器可大大提高集热器性能。而且,由于其厚度约为总气隙的25%,因此可大大节省蜂窝材料。

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