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Comparative test of two large solar collectors for solar field application

机译:两种大型太阳能集热器在太阳能领域的对比测试

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Two large flat plate solar collectors for solar heating plants were tested according to the standard norm EN 12975-2. The two collectors were almost identical, the only difference being a thin FEP (fluorinated ethylene propylene) foil interposed between the absorber and the glass cover in one of them, in order to decrease convection losses. The efficiencies of the collectors were tested for different flow rates and tilt angles. The effect of the change from laminar to turbulent regime was investigated as well. Numerical models of the two collectors were developed with the software Soleff and their results were compared to the experimental measurements. The experimental results showed that the FEP foil caused a decrease in the optical efficiency of 2-4 percent. Nevertheless, the collector with the FEP foil performed better when the mean temperature of the solar collector fluid was sufficiently high. Additionally, the collector efficiency of both collectors increased at higher flow rates and tilt angles. The models developed in Soleff fit the experimental results with an average error of 1 % in case of fully laminar and turbulent flow, so that they are likely to be suitable to simulate the collector performances in untested conditions. On the other hand, the software proved to be inadequate to study the collector efficiency in the transition region between laminar and turbulent regime.
机译:根据标准EN 12975-2对两个用于太阳能供热厂的大型平板太阳能集热器进行了测试。这两个收集器几乎相同,唯一的区别是在吸收器和玻璃罩中的一个中夹有一个薄的FEP(氟化乙烯丙烯)箔,以减少对流损失。针对不同的流速和倾斜角度测试了收集器的效率。还研究了从层流向湍流状态变化的影响。使用Soleff软件开发了两个收集器的数值模型,并将其结果与实验测量值进行了比较。实验结果表明,FEP箔导致光学效率降低了2-4%。然而,当太阳能收集器流体的平均温度足够高时,具有FEP箔的收集器表现更好。另外,两个收集器的收集器效率在较高的流速和倾斜角下都增加了。 Soleff开发的模型在完全层流和湍流的情况下,平均误差为1%,符合实验结果,因此它们很可能适合在未经测试的条件下模拟集热器的性能。另一方面,事实证明该软件不足以研究层流和湍流状态之间过渡区域的集热效率。

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